TEPADINA

Manufacturer
Amneal Pharmaceuticals LLC | Adienne S.r.l. | BSP Pharmaceuticals SpA | CIT SRL | Eurofins Biolab Srl | Indena SpA | LabAnalysis Life Science srl | NerPharMa S.r.l
Effective date
2026-01-30
Label type
HUMAN PRESCRIPTION DRUG LABEL
Version
30
Source
full-release
Hydrated at
2026-05-31 22:05:52

Label at a glance#

ProductTEPADINA
Active ingredientTHIOTEPA
Label structure26 sections

Boxed warning

  TEPADINA may cause severe marrow suppression, and high doses may cause marrow ablation with resulting infection or bleeding. Monitor hematologic laboratory parameters. Hematopoietic progenitor (stem) cell transplantation (HSCT) is required to prevent potentially fatal complications of the prolonged myelosuppression after high doses of TEPADINA [see Warnings and Precautions (5.1) ] TEPADINA should be considered p...

Indications and uses

TEPADINA is indicated to reduce the risk of graft rejection when used in conjunction with high-dose busulfan and cyclophosphamide as a preparative regimen for allogeneic hematopoietic progenitor (stem) cell transplantation (HSCT) for pediatric patients with class 3 beta-thalassemia [see Clinical Studies ( 14 ) ] . TEPADINA is indicated for treatment of adenocarcinoma of the breast or ovary. TEPADINA is indicated f...

Dosage and administration

Class 3 Beta-Thalassemia The recommended dosage of TEPADINA in pediatric patients is two administrations of 5 mg/kg given by intravenous infusion approximately 12 hours apart on Day -6 before allogeneic HSCT in conjunction with high-dose busulfan and cyclophosphamide as outlined in Table 1. See Prescribing Information for cyclophosphamide and busulfan for information on these drugs. Table 1: Dosage Regimen For All...

Storage and handling

How Supplied TEPADINA (thiotepa) for injection is a lyophilized white powder supplied in a carton containing one single-dose Type I clear glass vial with a rubber stopper (not made with natural rubber latex) or in an aluminum overwrap containing one single-dose multichamber flexible bag as: TEPADINA 15 mg One vial contains 15 mg thiotepa ( NDC 70121-1630-1). TEPADINA 100 mg One vial contains 100 mg thiotepa ( NDC ...

Label contents#

Full prescribing information#

WARNING: SEVERE MYELOSUPPRESSION and CARCINOGENICITY

BOXED WARNING SECTION

 

  • TEPADINA may cause severe marrow suppression, and high doses may cause marrow ablation with resulting infection or bleeding. Monitor hematologic laboratory parameters. Hematopoietic progenitor (stem) cell transplantation (HSCT) is required to prevent potentially fatal complications of the prolonged myelosuppression after high doses of TEPADINA [see Warnings and Precautions (5.1)]
  • TEPADINA should be considered potentially carcinogenic in humans [see Warnings and Precautions (5.7)]

RECENT MAJOR CHANGES

RECENT MAJOR CHANGES SECTION

Dosage and Administration, Preparation Instructions (2.2)                 4/2025

Dosage and Administration, Instruction for Use of the Multichamber Flexible Bag (2.3)                                                                             4/2025

1 INDICATIONS AND USAGE

INDICATIONS & USAGE SECTION

1.1 Class 3 Beta-Thalassemia

INDICATIONS & USAGE SECTION

TEPADINA is indicated to reduce the risk of graft rejection when used in conjunction with high-dose busulfan and cyclophosphamide as a preparative regimen for allogeneic hematopoietic progenitor (stem) cell transplantation (HSCT) for pediatric patients with class 3 beta-thalassemia [see Clinical Studies ( 14 )].

1.2 Adenocarcinoma of the Breast or Ovary

INDICATIONS & USAGE SECTION

TEPADINA is indicated for treatment of adenocarcinoma of the breast or ovary.

1.3 Malignant Effusions

INDICATIONS & USAGE SECTION

TEPADINA is indicated for controlling intracavitary effusions secondary to diffuse or localized neoplastic diseases of various serosal cavities.

1.4 Superficial Papillary Carcinoma of the Urinary Bladder

INDICATIONS & USAGE SECTION

TEPADINA is indicated for treatment of superficial papillary carcinoma of the urinary bladder.

2 DOSAGE AND ADMINISTRATION

DOSAGE & ADMINISTRATION SECTION

2.2 Preparation Instructions

DOSAGE & ADMINISTRATION SECTION

TEPADINA is a hazardous drug. Follow applicable special handling and disposal procedures. 1

Use appropriate aseptic technique.

Preparation from the Vial

Reconstitution of the vial

  • Reconstitute each TEPADINA vial with Sterile Water for Injection using the volumes described in Table 2.

Table 2: Reconstitution Volumes for the Vials

Strength Amount of Sterile Water for Injection required for reconstitution Final concentration 
 15 mg vial 1.5 mL 10 mg/mL
 100 mg vial 10 mL 10 mg/mL
  • Mix the vial by repeated inversions until the powder is completely dissolved. Visually inspect reconstituted solution in the vial for particulate matter and discoloration. The reconstituted solution may occasionally show opalescence.
  • Use the reconstituted solution immediately. If not used immediately, store the reconstituted solution in the vial refrigerated at 2°C to 8°C (36°F to 46°F), for up to 80 hours.
  • Dilution of the reconstituted vial into an infusion bag
    • Withdraw the required volume of the reconstituted solution from the TEPADINA vial. Discard any unused portion.
    • Transfer the reconstituted solution into an intravenous bag containing 0.9% Sodium Chloride Injection to obtain a final concentration between 0.5 mg/mL and 1 mg/mL. Gently mix the intravenous bag by slowly inverting the bag.
    • Use the diluted solution immediately. If the diluted solution is not used immediately, store refrigerated at 2°C to 8°C (36°F to 46°F) for up to 48 hours or room temperature at 25°C (77°F) for up to 6 hours.
  • Administration
    • Parenteral drug products should be inspected visually for particulate matter and discoloration prior to administration, whenever solution and container permit. Use TEPADINA diluted solutions only if free of visible particulate matter.
    • For intravenous administration of high doses in the preparative regimen for allogeneic HSCT for beta thalassemia, administer by intravenous infusion via central venous catheter over 3 hours using an infusion set equipped with 0.2 micron filter.
    • For intravesicular administration into the bladder by catheter, see further instructions in Dosage and Administration Section 2.1.
    • For all other indications, see further instructions in Dosage and Administration Section 2.1.

    Preparation from the Multichamber Flexible Bag

    See the Instructions for Use in Subsection 2.3 for illustrated steps for preparation and administration of TEPADINA from the multichamber flexible bag.

  • Activation of the TEPADINA Multichamber Flexible Bag
    • Activate the multichamber flexible bag by pressing firmly and applying uniform pressure with the palms of your overlapped hands until the peel seal is broken.
    • Mix gently until the reconstituted solution is completely dissolved.
    • Administer TEPADINA immediately after reconstitution of the multichamber flexible bag. If not used immediately, store refrigerated at 2°C to 8°C (36°F to 46°F) for up to 168 hours or at room temperature at 20°C to 25°C (68°F to 77°F) up to 56 hours.
  • Administration
  • Parenteral drug products should be inspected visually for particulate matter and discoloration prior to administration, whenever solution and container permit. Solution should be colorless and without particulate matter.
  • After activation, the resultant concentration is 1 mg/mL.
  • 200 mg or 400 mg dose can be directly administered from the multichamber flexible bag after activation.
  • For doses other than 200 mg or 400 mg, withdraw the patient-specific dose from the multichamber flexible bag for transfer to a separate empty bag for administration. No further dilution is necessary.
  • Administer using a 0.2 micron filter.

 


2.3 Instructions for Use of the Multichamber Flexible Bag:

SPL UNCLASSIFIED SECTION

Multichamber Flexible Bag Use Instructions
Figure A

 

1 - Overwrap Notch

 figure afigure a

Figure B

 2 – NEVER use this port

3 – Luer Port

 4 – Twist off Port

 5 – Label Area

 6 – Peel Seal (Must break to activate)

 7 – Hole (For hanging the bag)

 8 – Diluent chamber

 9 – Lyophilized powder chamber

TEPADINA® 200 mg

 

figure bfigure b

 

TEPADINA® 400 mg

 

figure b-400mg bagfigure b-400mg bag

 1 – REMOVE OVERWRAP
 

a) Place bag on a clean, stable surface before opening.

b) Tear from overwrap notch, located close to the ports (Figure A – point 1).

c) Tear short sides open to access the inner bag as per Figure C.


Figure C


figure cfigure c

d) Remove the multichamber flexible bag from the aluminum overwrap and unfold the bag Figure D.

Figure D

figure dfigure d

 2 - INSPECT BAG PRIOR TO ACTIVATION  3 – ACTIVATE THE BAG
 

Place bag on a clean, stable surface with the ports pointing away from you, as per Figure E.

Check that there are no liquid or product leakages from the connection ports 2, 3, 4 and from the chambers 8, 9.

Check the integrity of peel seal 6, verifying the absence of liquid in the chamber 9.

Figure E

TEPADINA 200 mg®

 figure efigure e

TEPADINA® 400 mg

figure e-400mg bagfigure e-400mg bag

Overlap your hands, on the lower portion of chamber 8 (as per Figure F).

Press firmly and apply uniform pressure until peel seal 6 is completely activated (it may take up to 5 seconds of continued pressure to break the peel seal 6).

Figure F

TEPADINA 200 mg®

 figure ffigure f

TEPADINA® 400 mg

figure f-400mg bagfigure f-400mg bag

 BAG BEFORE ACTIVATION  BAG AFTER ACTIVATION

 Figure G

 figure gfigure g

Figure H

 figure hfigure h

 Do NOT squeeze.  

Figure I

figure Ifigure I
 4 – INSPECT BAG TO CONFIRM ACTIVATION
 

Check the peel seal 6 is now completely activated.

Chamber 8 and 9 are merged.                            

If the bag is not activated, refer to Step 3.

Figure J

figure jfigure j
 

Mix gently until complete dissolution of product.

After activation, the resultant concentration is 1 mg/mL.

A dose of 200 mg or 400 mg may be directly infused from the bag (see Step 6). For doses less than 200 mg or 400 mg see Step 5. 

  Figure K

figure kfigure k
 5 – DOSE PREPARATION – for doses less than 200 mg or 400 mg withdraw the patient-specific dose from the TEPADINA® multichamber flexible bag and transfer to an appropriately-sized, empty, sterile bag for intravenous infusion.
Identify the Luer Port 3 if withdrawing a dose is needed.

Remove the plastic cap from Luer Port.

Figure L

figure Lfigure L

Screw the luer lock device as per Figure M.

Do not use unproper non luer lock devices on port 3.

Figure M

figure mfigure m

Ensure that the connection is fully seated and tighten.

 
 

Withdraw the desired dose from TEPADINA® bag. This may require multiple graduated syringes depending on the desired dose. Unscrew each syringe counter-clockwise when finished.

Figure N

figure Nfigure N

Replace the plastic cap on the Luer-Lock port 3.

Attach a needle or an appropriate closed-system transfer device to each syringe containing thiotepa solution and transfer the contents to an appropriately-sized, empty, sterile bag for intravenous infusion.

Discard the unused portion of the TEPADINA® bag. Follow applicable special handling and disposal procedures.

 6 – CONNECTION for administration of 200 mg or 400 mg - The infusion set may be connected to the bag through either the spike connector OR the luer connector.
 

OPTION A – SPIKE CONNECTION

Identify Twist off port 4.

Twist off the plastic cap before inserting the spike.

Figure O

figure Ofigure O

Insert the spike connector.

Figure P

figure Pfigure P
 

OPTION B– LUER CONNECTION

Select luer cap port 3.

Remove the plastic cap from luer port 3 before connecting the luer connector.

Figure Q

figure Qfigure Q

Insert the luer connector.

Figure R

figure Rfigure R

Ensure that the connection is fully seated and tighten.

 7 – HANG THE BAG
 Hang the bag by the hole 7. 

Figure S

figure Sfigure S

3 DOSAGE FORMS AND STRENGTHS

DOSAGE FORMS & STRENGTHS SECTION

  • For injection:15 mg, lyophilized white powder in single-dose vial for reconstitution.
  • For injection:100 mg, lyophilized white powder in single-dose vial for reconstitution.
  • For injection: 200 mg, lyophilized white powder thiotepa and 200 mL 0.9% Sodium Chloride Injection in single-dose multichamber flexible bag for reconstitution.
  • For injection: 400 mg, lyophilized white powder thiotepa and 400 mL 0.9% Sodium Chloride Injection in single-dose multichamber flexible bag for reconstitution.

5 WARNINGS AND PRECAUTIONS

WARNINGS AND PRECAUTIONS SECTION

5.1 Myelosuppression

WARNINGS AND PRECAUTIONS SECTION

The consequence of treatment with high doses of TEPADINA together with other chemotherapy at the recommended dose and schedule in the preparative regimen for class 3 beta- thalassemia is profound myelosuppression occurring in all patients. Do not begin the preparative regimen if a stem cell donor is not available. Monitor complete blood counts, and provide supportive care for infections, anemia and thrombocytopenia until there is adequate hematopoietic recovery.

For patients receiving TEPADINA for treatment of adenocarcinoma of the breast, adenocarcinoma of the ovary, malignant effusions and superficial papillary carcinoma of the urinary bladder, if the bone marrow has been compromised by prior irradiation or chemotherapy, or is recovering from chemotherapy, the risk of severe myelosuppression with TEPADINA may be increased. Perform periodic complete blood counts during the course of treatment with TEPADINA. Provide supportive care for infections, bleeding, and symptomatic anemia [ see Adverse Reactions (6.1)].


5.2 Hypersensitivity

WARNINGS AND PRECAUTIONS SECTION

Clinically significant hypersensitivity reactions, including anaphylaxis, have occurred following administration of TEPADINA. If anaphylactic or other clinically significant allergic reaction occurs, discontinue treatment with TEPADINA, initiate appropriate therapy, and monitor until signs and symptoms resolve [see Contraindications ( 4 ), Adverse Reactions ( 6.1 )].


5.3 Cutaneous Toxicity

WARNINGS AND PRECAUTIONS SECTION

TEPADINA and/or its active metabolites may be excreted in part via skin patients receiving high-dose therapy. Treatment with TEPADINA may cause skin discoloration, pruritus, blistering, desquamation, and peeling that may be more severe in the groin, axillae, skin folds, in the neck area, and under dressings. Instruct patients to shower or bathe with water at least twice daily through 48 hours after administration of TEPADINA. Change occlusive dressing and clean the covered skin at least twice daily through 48 hours after administration of TEPADINA. Change bed sheets daily during treatment.

Skin reactions associated with accidental exposure to TEPADINA may also occur. Wash the skin thoroughly with soap and water in case TEPADINA solution contacts the skin. Flush mucous membranes in case of TEPADINA contact with mucous membranes.

5.4 Concomitant Use of Live and Attenuated Vaccines

WARNINGS AND PRECAUTIONS SECTION

Do not administer live or attenuated viral or bacterial vaccines to a patient treated with TEPADINA until the immunosuppressive effects have resolved.

5.5 Hepatic Veno-Occlusive Disease

WARNINGS AND PRECAUTIONS SECTION

Hepatic veno-occlusive disease may occur in patients who have received high-dose TEPADINA in conjunction with busulfan and cyclophosphamide [ see Adverse Reactions (6.1)]. Monitor by physical examination, serum transaminases and bilirubin daily through BMT Day +28, and provide supportive care to patients who develop hepatic veno-occlusive disease.

5.6 Central Nervous System Toxicity

WARNINGS AND PRECAUTIONS SECTION

Fatal encephalopathy has occurred in patients treated with high doses of thiotepa. Other central nervous system toxicities, such as headache, apathy, psychomotor retardation, disorientation, confusion, amnesia, hallucinations, drowsiness, somnolence, seizures, coma, inappropriate behaviour and forgetfulness have been reported to occur in a dose-dependent manner during or shortly after administration of high-dose thiotepa. In pediatric patients treated with TEPADINA at the recommended dose in combination with busulfan and cyclophosphamide, 8% developed central nervous system toxicity (seizures and intracranial hemorrhage). Do not exceed the recommended dose of TEPADINA. If severe or life-threatening central nervous system toxicity occurs, discontinue administration of TEPADINA and provide supportive care.  

5.7 Carcinogenicity

WARNINGS AND PRECAUTIONS SECTION

Like many alkylating agents, thiotepa has been reported to be carcinogenic when administered to laboratory animals [see Nonclinical Toxicity ( 13.1 )]. Carcinogenicity is shown most clearly in studies using mice, but there is some evidence of carcinogenicity in man. There is an increased risk of a secondary malignancy with use of TEPADINA.

5.8 Embryo-Fetal Toxicity

WARNINGS AND PRECAUTIONS SECTION

Based on the mechanism of action and findings in animals, TEPADINA can cause fetal harm when administered to a pregnant woman. There are no adequate and well-controlled studies of TEPADINA in pregnant women. Thiotepa given by the intraperitoneal (IP) route was teratogenic in mice at doses ≥ 1 mg/kg (3.2 mg/m2), approximately 8-fold less than the maximum recommended human therapeutic dose (0.8 mg/kg, 27 mg/m2), based on body-surface area. Thiotepa given by the IP route was teratogenic in rats at doses ≥ 3 mg/kg (21 mg/m2), approximately equal to the maximum recommended human therapeutic dose, based on body-surface area. Thiotepa was lethal to rabbit fetuses at a dose of 3 mg/kg (41 mg/m2), approximately two times the maximum recommended human therapeutic dose based on body-surface area.

Advise pregnant women of the potential risk to the fetus [ see Use in Specific Populations ( 8.1 , 8.3)]. Advise females of reproductive potential to use highly effective contraception during and after treatment with TEPADINA for 6 months after therapy. Advise males of reproductive potential to use effective contraception during and after treatment with TEPADINA for 1 year after therapy [ see Use in Specific Populations ( 8.1 , 8.3)].

6 ADVERSE REACTIONS

ADVERSE REACTIONS SECTION

The following clinically significant adverse reactions are described elsewhere in the labeling:

6.1 Clinical Trials Experience

ADVERSE REACTIONS SECTION

Because clinical trials are conducted under widely varying conditions, adverse reaction rates observed in the clinical trials of a drug cannot be directly compared to rates in the clinical trials of another drug and may not reflect the rates observed in practice.

Adverse Reactions With the Preparative Regimen for Class 3 Beta-Thalassemia

The safety of TEPADINA was evaluated by retrospective analysis of 76 pediatric patients with class 3 beta-thalassemia who underwent allogeneic hematopoietic progenitor (stem) cell transplantation (HSCT) using busulfan and cyclophosphamide with TEPADINA (n=25) or without TEPADINA (n=51) [ see Clinical Studies ( 14 )].  Adverse reactions were abstracted retrospectively from the medical records.

Serious adverse events that occurred in the TEPADINA-treated and control cohort were, respectively: gastrointestinal hemorrhage (4% vs 2%), pneumonia (4% vs 0), seizure (4% vs 2%), subarachnoid hemorrhage (4% vs 0) and veno-occlusive disease (4% vs 2%).  By 90 days after HSCT, grades 2 to 4 acute graft-versus-host disease was observed in 7 (28%) patients in the TEPADINA cohort and in 13 (26%) patients in the control cohort.  By 1-year after transplantation, chronic graft-versus-host disease was observed in 8 (35%) of 23 evaluable patients in the TEPADINA cohort, and 7 (14%) of 49 evaluable patients in the control cohort.   

Adverse reactions occurring in at least 5% of patients treated with TEPADINA from start of the preparative regimen through 30 days after transplantation are shown in Table 3.  

Table 3: Common Adverse Reactions (>5%) Occurring Through 30 Days After Transplantation In Patients With Class 3 Beta-Thalassemia Using Busulfan And Cyclophosphamide With Or Without TEPADINA in the Preparative Regimen

  Preparative Regimen of Busulfan and Cyclophosphamide
  

With TEPADINA

N=25 patients (%)

 

Without TEPADINA

N=51 patients (%)

Adverse Reaction  Any Grade  Grade 3-51  Any Grade  Grade 3-51
 Mucositis2  16 (64%) 4 (16%) 22 (43%) 1 (2%)
 Cytomegalovirus Infection 12 (48%) 0 15 (29%) 0
 Hemorrhage3  7 (28%) 2 (8%) 12 (24%) 3 (6%)
 Diarrhea 6 (24%) 0 7 (14%) 2 (4%)
 Hematuria4  5 (20%) 0 10 (20%) 3 (6%)
 Rash5  3 (12%) 0 11 (22%) 0
 Intracranial Hemorrhage6  2 (8%) 1 (4%) 0 0
 Pseudomonas Infection 2 (8%) 0 0 0

1Severe, life-threatening or fatal

2Mucositis includes mouth hemorrhage, mucosal inflammation and stomatitis

3Hemorrhage includes all hemorrhage terms

4Hematuria includes cystitis hemorrhagic and hematuria

5Rash includes dermatitis exfoliative, palmar erythema, rash, rash maculo-papular, rash pruritic and skin toxicity

6Hemorrhage Intracranial includes hemorrhage intracranial and subarachnoid hemorrhage

All patients in the TEPADINA-treated and control cohorts developed profound cytopenias, including neutropenia, anemia, thrombocytopenia. Table 4 shows the selected chemistry abnormalities that occurred from start of the preparative regimen through 30 days after transplantation.

Table 4: Selected Laboratory Abnormalities Occurring Through 30 Days After Transplantation In Patients With Class 3 Beta-Thalassemia Using Busulfan And Cyclophosphamide With Or Without TEPADINA in the Preparative Regimen

  Preparative Regimen of Busulfan and Cyclophosphamide
  

With TEPADINA

N=25 patients (%)

 

Without TEPADINA

N=51 patients (%)

Adverse Reaction  Any Grade  Grade 3-4  Any Grade  Grade 3-4
Elevated alanine aminotransferase 22 (88%) 6 (24%) 49 (96%) 14 (27%)
Elevated aspartate aminotransferase 20 (80%) 4 (16%) 45 (88%) 9 (18%)
Elevated total bilirubin 20 (80%) 4 (16%) 39 (77%) 2 (4%)

Adverse Reactions with Treatment of adenocarcinoma of the breast, adenocarcinoma of the ovary, malignant effusions and superficial papillary carcinoma of the urinary bladder

Gastrointestinal: Nausea, vomiting, abdominal pain, anorexia.

 

General: Fatigue, weakness. Febrile reaction and discharge from a subcutaneous lesion may occur as the result of breakdown of tumor tissue.

Hypersensitivity Reactions: Allergic reactions - rash, urticaria, laryngeal edema, asthma, anaphylactic shock, wheezing.

Local Reactions: Contact dermatitis, pain at the injection site.

Neurologic: Dizziness, headache, blurred vision.

Renal: Dysuria, urinary retention, chemical cystitis or hemorrhagic cystitis.

Reproductive: Amenorrhea, interference with spermatogenesis.

Respiratory: Prolonged apnea has been reported when succinylcholine was administered prior to surgery, following combined use of thiotepa and other anticancer agents. It was theorized that this was caused by decrease of pseudocholinesterase activity caused by the anticancer drugs.

Skin: Dermatitis, alopecia. Skin depigmentation has been reported following topical use.

Special Senses: Conjunctivitis.

6.2 Postmarketing Experience

ADVERSE REACTIONS SECTION

The following adverse reactions have been identified during post approval use of TEPADINA in preparative regimens prior to allogeneic or autologous hematopoietic progenitor (stem) cell transplantation (HSCT) in adult and pediatric patients. Because these reactions are reported voluntarily from a population of uncertain size, it is not always possible to reliably estimate their frequency or establish a causal relationship to drug exposure.

Blood and lymphatic system disorders: Febrile bone marrow aplasia.

Cardiac disorders: Bradycardia, cardiac failure congestive, cardio-respiratory arrest, pericardial effusion, pericarditis, right ventricular hypertrophy.

Congenital, familial and genetic disorders: Aplasia.

Ear and labyrinth disorders: Deafness.

Eye disorders: Blindness, eyelid ptosis, papilledema, strabismus.

 

Gastrointestinal disorders: Ascites, dysphagia, enterocolitis, gastritis, palatal disorder.

 

General disorders and administration site conditions: Device related infection, gait disturbance, malaise, multi-organ failure, pain.

Hepatobiliary disorders: Hepatomegaly.

Immune system disorders: Bone marrow transplant rejection, immunosuppression.

Infections and infestations: Acute sinusitis, bronchopulmonary aspergillosis, candida sepsis, enterococcal infection, Epstein-Barr virus infection, Escherichia sepsis, Fusarium infection, gastroenteritis, infection, lower respiratory tract infection fungal, lower respiratory tract infection viral, parainfluenza virus infection, Pneumonia legionella, relapsing fever, respiratory tract infection, sepsis, septic shock, Staphylococcal bacteremia, Staphylococcal infection, systemic candida, urinary tract infection.

Injury, poisoning and procedural complications: Refractoriness to platelet transfusion, subdural hematoma.

Investigations: Coagulation test abnormal, hemoglobin decreased, Klebsiella test positive, nuclear magnetic resonance imaging brain abnormal, transaminases increased, weight increased.

Metabolism and nutrition disorders: Hyponatremia.

Neoplasms benign, malignant and unspecified (incl. cysts and polyps): Breast cancer metastatic, central nervous system lymphoma, leukemia recurrent, lymphoma, malignant neoplasm progression, metastatic neoplasm, post transplant lymphoproliferative disorder.

Nervous system disorders: Aphasia, brain injury, bulbar palsy, central nervous system lesion, cerebral microangiopathy, cerebral ventricle dilatation, cerebrovascular accident, cognitive disorder, convulsion, coordination abnormal, encephalitis, encephalopathy, hemiplegia, hypotonia, leukoencephalopathy, memory impairment, motor dysfunction, neurotoxicity, quadriparesis, speech disorder, tremor, VIIth nerve paralysis, white matter lesion.

Psychiatric disorders: Delirium, depression, disorientation, suicidal ideation.

Renal and urinary disorders: Renal failure, nephropathy toxic.

Respiratory, thoracic and mediastinal disorders: Acute respiratory distress, aspiration, dyspnea exertional, interstitial lung disease, lung disorder, pneumonitis, pulmonary arteriopathy, pulmonary sepsis, pulmonary veno-occlusive disease, respiratory distress, respiratory failure, pulmonary hypertension.

Skin and subcutaneous tissue disorders: Stevens-Johnson syndrome and toxic epidermal necrolysis.

Vascular disorders: Capillary leak syndrome.

7 DRUG INTERACTIONS

DRUG INTERACTIONS SECTION

7.1 Effect of Cytochrome CYP3A Inhibitors and Inducers

DRUG INTERACTIONS SECTION

In vitro studies suggest that thiotepa is metabolized by CYP3A4 and CYP2B6 to its active metabolite TEPA. Avoid co-administration of strong CYP3A4 inhibitors (e.g., itraconazole, clarithromycin, ritonavir) and strong CYP3A4 inducers (e.g., rifampin, phenytoin) with TEPADINA due to the potential effects on efficacy and toxicity [see Clinical Pharmacology ( 12.3 )]. Consider alternative medications with no or minimal potential to inhibit or induce CYP3A4. If concomitant use of strong CYP3A4 modulators cannot be avoided, closely monitor for adverse drug reactions.

7.2 Effect of TEPADINA on Cytochrome CYP2B6 Substrates

DRUG INTERACTIONS SECTION

In vitro studies suggest that thiotepa inhibits CYP2B6. TEPADINA may increase the exposure of drugs that are substrates of CYP2B6 in patients; however, the clinical relevance of this in vitro interaction is unknown [see Clinical Pharmacology ( 12.3 )].

The administration of thiotepa with cyclophosphamide in patients reduces the conversion of cyclophosphamide to the active metabolite, 4-hydroxycyclophosphamide; the effect appears sequence dependent with a greater reduction in the conversion to 4-hydroxycyclophosphamide when thiotepa is administered 1.5 hours prior to the intravenous administration of cyclophosphamide compared to administration of thiotepa after intravenous cyclophosphamide [see Clinical Pharmacology ( 12.3 )]. The reduction in 4-hydroxycyclophosphamide levels may potentially reduce efficacy of cyclophosphamide treatment.

8 USE IN SPECIFIC POPULATIONS

USE IN SPECIFIC POPULATIONS SECTION

8.1 Pregnancy

USE IN SPECIFIC POPULATIONS SECTION

Risk Summary

TEPADINA can cause fetal harm when administered to a pregnant woman based on findings from animals and the drug’s mechanism of action [ see Clinical Pharmacology ( 12.1 )]. Limited available data with TEPADINA use in pregnant women are insufficient to inform a drug-associated risk of major birth defects and miscarriage.  In animal reproduction studies, administration of thiotepa to pregnant mice and rats during organogenesis produced teratogenic effects (neural tube defects and malformations of the skeletal system of the fetus) at doses approximately 0.125 and 1 times, respectively, the maximum recommended human daily dose on a mg/m2 basis. Thiotepa was lethal to rabbit fetuses at approximately 2 times the maximum recommended human therapeutic dose based on body-surface area [ see Data].  Consider the benefits and risks of TEPADINA for the mother and possible risks to the fetus when prescribing TEPADINA to a pregnant woman.

The estimated background risk of major birth defects and miscarriage for the indicated population is unknown. In the U.S. general population, the estimated background risk of major birth defects and miscarriage in clinically recognized pregnancies is 2-4% and 15-20%, respectively.

Data

Animal Data

Thiotepa given by the IP route in mice at doses ≥ 1 mg/kg (3.2 mg/m2), approximately 8-fold less than the maximum recommended human therapeutic dose based on body-surface area, and in rats at doses ≥ 3 mg/kg (21 mg/m2), approximately equal to the maximum recommended human therapeutic dose based on body-surface area, resulted in various malformations including neural tube defects, omphalocele, renal agenesis, atresia ani, limb and digit defects, cleft palate, micrognathia, other skeletal anomalies in the skull, vertebrae and ribs, and reduced skeletal ossification.  Thiotepa was lethal to rabbit fetuses at a dose of 3 mg/kg (41 mg/m2), approximately 2 times the maximum recommended human therapeutic dose based on body-surface area.

8.2 Lactation

USE IN SPECIFIC POPULATIONS SECTION

Risk Summary

There is no information regarding the presence of thiotepa in human milk, the effects on the breastfed infant, or the effects on milk production.

Because of the potential for serious adverse reactions, including the potential for tumorigenicity shown for thiotepa in animal studies, advise patients not to breastfeed during TEPADINA treatment.

8.3 Females and Males of Reproductive Potential

USE IN SPECIFIC POPULATIONS SECTION

TEPADINA can cause fetal harm when administered to a pregnant woman [see Use in Specific Populations (8.1)].

Pregnancy testing

Verify the pregnancy status of females of reproductive potential prior to initiating TEPADINA therapy.

Contraception

Females

Advise females of reproductive potential to avoid pregnancy during TEPADINA treatment and for 6 months after the final dose of TEPADINA. Advise females to immediately report pregnancy [ see  Use in Specific Populations (8.1)] .

Males

TEPADINA may damage spermatozoa and testicular tissue, resulting in possible genetic abnormalities. Males with female sexual partners of reproductive potential should use effective contraception during TEPADINA treatment and for 1 year after the final dose of TEPADINA [ see Nonclinical Toxicology ( 13.1 )].

Infertility

Based on nonclinical findings, male and female fertility may be compromised by treatment with TEPADINA. Inform male patients about the possibility of sperm conservation before the start of therapy [ see Nonclinical Toxicology (13.1)].

8.4 Pediatric Use

USE IN SPECIFIC POPULATIONS SECTION

The safety and effectiveness of TEPADINA for prevention of graft rejection in pediatric patients undergoing allogeneic HSCT for class 3 beta-thalassemia was established in one prospective study and one retrospective study [see Clinical Studies (14)] that included 1 infant (1 month to 1 year), 23 children (2 to 11 years) and 13 adolescents (12 to 16 years) who received TEPADINA as part of their preparative regimen. Safety and effectiveness of TEPADINA in neonates have not been established.    

Safety and effectiveness of TEPADINA for treatment of adenocarcinoma of the breast, adenocarcinoma of the ovary, malignant effusions and superficial papillary carcinoma of the urinary bladder in pediatric patients have not been established.

8.5 Geriatric Use

USE IN SPECIFIC POPULATIONS SECTION

The safety and effectiveness of TEPADINA as a preparative regimen prior to allogeneic hematopoietic progenitor (stem) cell transplantation (HSCT) for patients with class 3 beta-thalassemia have not been established in geriatric patients. Clinical studies of TEPADINA for this indication did not include subjects aged 65 and over.

Clinical studies of TEPADINA for treatment of adenocarcinoma of the breast, adenocarcinoma of the ovary, malignant effusions and superficial papillary carcinoma of the urinary bladder did not include sufficient numbers of subjects aged 65 and over to determine whether elderly subjects respond differently from younger subjects, and other reported clinical experience has not identified differences in responses between the elderly and younger patients. In general, dose selection for an elderly patient should be cautious, usually starting at the low end of the dosing range, reflecting the greater frequency of decreasing hepatic, renal or cardiac function, and of concomitant disease or other drug therapy.

8.6 Renal Impairment

USE IN SPECIFIC POPULATIONS SECTION

In patients with moderate (creatinine clearance (CLcr) of 30 mL/min to 59 mL/min) renal impairment, decreased renal excretion may result in increased plasma levels of thiotepa and TEPA [see Clinical Pharmacology ( 12.3 )]. This may result in increased toxicity. Monitor patients with moderate to severe (CLcr < 30 mL/min) renal impairment for signs and symptoms of toxicity following treatment with TEPADINA for an extended period of time.

8.7 Hepatic Impairment

USE IN SPECIFIC POPULATIONS SECTION

Thiotepa is extensively metabolized in the liver. Patients with moderate (bilirubin levels greater than 1.5 times to 3 times the upper limit of normal and any AST) hepatic impairment may have increased plasma levels of thiotepa [ see Clinical Pharmacology ( 12.3 )] . This may result in toxicity. Monitor patients with moderate to severe (bilirubin levels greater than 3 times upper limit of normal and any AST) hepatic impairment for signs and symptoms of toxicity following treatment with TEPADINA for an extended period of time.

10 OVERDOSE

OVERDOSAGE SECTION

There is no experience with overdoses of thiotepa. The most important adverse reactions expected in case of overdose are myeloablation and pancytopenia [ see Nonclinical Toxicology (13)]. There is no known antidote for thiotepa. Monitor the hematological status closely and provide vigorous supportive measures as medically indicated.

11 DESCRIPTION

DESCRIPTION SECTION

TEPADINA (thiotepa) is an alkylating agent. TEPADINA (thiotepa) for injection is supplied as a non-pyrogenic, sterile lyophilized white powder for intravenous, intracavitary, or intravesical use after reconstitution and dilution.

TEPADINA is available

  • In a single-dose vial containing 15 mg thiotepa. After reconstitution with 1.5 mL of Sterile Water for Injection, each mL contains 10 mg thiotepa;
  • In a single-dose vial containing 100 mg thiotepa. After reconstitution with 10 mL of Sterile Water for Injection, each mL contains 10 mg thiotepa;
  • In a single-dose multichamber flexible bag containing 200 mg thiotepa and 200 mL 0.9% Sodium Chloride Injection;
  • In a single-dose multichamber flexible bag containing 400 mg thiotepa and 400 mL 0.9% Sodium Chloride Injection;

Thiotepa is a synthetic product with antitumor activity. The chemical name for thiotepa is Tris(1-aziridinyl)phosphine sulfide. Thiotepa has the following structural formula:Thiotepa StructureThiotepa Structure

Thiotepa has the molecular formula C6H12N3PS, and a molecular weight of 189.23, and it appears as fine, white crystalline flakes, with a melting range of 52°C to 57°C. It is soluble in water and organic solvents. When reconstituted with sterile water for injection, the resulting solution has a pH of approximately 5.5 to 7.5. Thiotepa is unstable in acid medium.

12 CLINICAL PHARMACOLOGY

CLINICAL PHARMACOLOGY SECTION

12.1 Mechanism of Action

CLINICAL PHARMACOLOGY SECTION

Thiotepa is a cytotoxic agent of the polyfunctional type, related chemically and pharmacologically to the nitrogen mustard. The radiomimetic action of thiotepa is believed to occur through the release of ethyleneimine radicals which, like irradiation, disrupt the bonds of DNA. One of the principle bond disruptions is initiated by alkylation of guanine at the N-7 position, which severs the linkage between the purine base and the sugar and liberates alkylated guanines.

12.2  Pharmacodynamics

SPL UNCLASSIFIED SECTION

The exposure-response relationship for efficacy and safety has not been characterized.

12.3 Pharmacokinetics

CLINICAL STUDIES SECTION

Absorption

Thiotepa reached maximal concentrations close to the end infusion following an intravenous infusion.  

Distribution

The binding of thiotepa to plasma proteins is approximately 10% to 20%. The mean volume of distribution (% coefficient of variation) of thiotepa was 30 L/m2 (44%) or 1.2 L/kg (47%) following a single intravenous infusion of TEPADINA at a dose of 5 mg/kg over 3 hours in pediatric population. In adults administered intravenous thiotepa between 20 mg to 250 mg/m2 as an intravenous bolus or infusion up to 4 hours, the mean volume of distribution of thiotepa ranged from 1.0 L/kg (30%) to 1.9 L/kg (17%).

Elimination

Following a single intravenous infusion over 3 hours of TEPADINA at a dose of 5 mg/kg in pediatric population, the estimated mean (% coefficient of variation) clearance of thiotepa was 0.58 L/hr/kg (60%) or 13.8 L/hr/m2 (52%). The mean terminal elimination half-life was 1.7 hours (64%) for thiotepa and 4 hours (29%) for its major active metabolite, N,N',N''-triethylenephosphoramide (TEPA) in pediatric population.  In adults administered intravenous thiotepa between 20 mg to 250 mg/m2 as an intravenous bolus or infusion up to 4 hours, the mean thiotepa clearance ranged from 14.6 L/hr/m2 (23%) to 27.9 L/hr/m2 (69%). In adult population, the mean terminal elimination half-life ranged from 1.4 hours (7%) to 3.7 hours (14%) for thiotepa and from 4.9 hours to 17.6 hours (20%) for TEPA.

Metabolism

Thiotepa undergoes hepatic metabolism. In vitro data suggests that CYP3A4 and CYP2B6 may be responsible for the metabolism of thiotepa to TEPA, a major active metabolite.

Excretion

In adult and pediatric patients, urinary excretion of thiotepa accounted for less than 2% of the dose and TEPA accounted for 11% or less of the dose.

 

Specific Populations

 

Hepatic Impairment

The clearance of thiotepa following a single TEPADINA dose of 5 mg/kg in pediatric population with mild hepatic impairment was similar to the clearance observed in patients with normal liver function administered thiotepa.

The exposure (as measured by area under the curve (AUC)) of thiotepa increased by 1.6-fold and 1.8-fold following administration of multiple thiotepa doses of 7 mg/kg administered every 2 days with cyclophosphamide in two adult patients who had liver metastases with moderate hepatic impairment compared to the exposure observed in one patient with normal hepatic function.  The effect of severe hepatic impairment on thiotepa exposure is unknown.

Renal Impairment

The exposure (as measured by AUC) of thiotepa increased by 1.4-fold and TEPA increased by 2.6-fold following administration of multiple doses of 120 mg/m2/day in one patient with moderate renal impairment (CLcr = 38 mL/min) administered cyclophosphamide plus thiotepa plus carboplatin, compared to exposure of thiotepa in patients with normal renal function.The effects of severe renal impairment or end-stage renal disease on thiotepa exposure are unknown.

Drug Interactions

The clinical relevance of in vitro inhibition of the cytochrome P450 enzymes described below is unknown, but it cannot be excluded that the systemic exposure of thiotepa or medicinal products that are substrates for these enzymes may be affected with concomitant administration with TEPADINA.

 

Effect of Cytochrome P450 Modulators on Thiotepa

In vitro data demonstrates that CYP3A4 and CYP2B6 inhibitors decrease the metabolism of thiotepa [see Drug Interactions (7.1)].

Effect of Thiotepa on Cytochrome P450 2B6

In vitro data demonstrates that thiotepa inhibits CYP2B6.

 

Effect of Thiotepa on Cyclophosphamide

The administration of thiotepa 1.5 hours prior to intravenous cyclophosphamide in patients administered cyclophosphamide plus thiotepa plus carboplatin decreased the AUC of 4-hydroxycyclophosphamide by 26% and maximal concentrations of 4-hydroxycyclophosphamide by 62%, compared to administration of cyclophosphamide prior to thiotepa.

13 NONCLINICAL TOXICOLOGY

NONCLINICAL TOXICOLOGY SECTION

13.1 Carcinogenesis, Mutagenesis, Impairment of Fertility

NONCLINICAL TOXICOLOGY SECTION

In mice, repeated intraperitoneal (IP) administration of thiotepa (1.15 or 2.3 mg/kg three times per week for 52 or 43 weeks, respectively) produced a significant increase in the combined incidence of squamous-cell carcinomas of the skin, preputial gland, and ear canal, and combined incidence of lymphoma and lymphocytic leukemia. In other studies in mice, repeated IP administration of thiotepa (4 or 8 mg/kg three times per week for 4 weeks followed by a 20 week observation period or 1.8 mg/kg three times per week for 4 weeks followed by a 35 week observation period) resulted in an increased incidence of lung tumors. In rats, repeated IP administration of thiotepa (0.7 or 1.4 mg/kg three times per week for 52 or 34 weeks, respectively) produced significant increases in the incidence of squamous-cell carcinomas of the skin or ear canal, combined hematopoietic neoplasms, and uterine adenocarcinomas. Thiotepa given intravenously (IV) to rats (1 mg/kg once per week for 52 weeks) produced an increased incidence of malignant tumors (abdominal cavity sarcoma, lymphosarcoma myelosis, seminoma, fibrosarcoma, salivary gland hemangioendothelioma, mammary sarcoma, pheochromocytoma) and benign tumors.

The lowest reported carcinogenic dose in mice (1.15 mg/kg, 3.68 mg/m2) is approximately 7-fold less than the maximum recommended human therapeutic dose based on body-surface area. The lowest reported carcinogenic dose in rats (0.7 mg/kg, 4.9 mg/m2) is approximately 6-fold less than the maximum recommended human therapeutic dose based on body-surface area.

Thiotepa was mutagenic in in vitro assays in Salmonella typhimurium, E coli, Chinese hamster lung and human lymphocytes. Chromosomal aberrations and sister chromatid exchanges were observed in vitro with thiotepa in bean root tips, human lymphocytes, Chinese hamster lung, and monkey lymphocytes.

Mutations were observed with oral thiotepa in mouse at doses > 2.5 mg/kg (8 mg/m2). The mouse micronucleus test was positive with intraperitoneal administration of > 1 mg/kg (3.2 mg/m2). Other positive in vivo chromosomal aberration or mutation assays included Drosophila melanogaster, Chinese hamster marrow, murine marrow, monkey lymphocyte, and murine germ cell.

Thiotepa impaired fertility in male mice at oral or intraperitoneal doses ≥ 0.7 mg/kg (2.24 mg/m2), approximately 12-fold less than the maximum recommended human therapeutic dose based on body-surface area. Thiotepa (0.5 mg) inhibited implantation in female rats when instilled into the uterine cavity. Thiotepa interfered with spermatogenesis in mice at IP doses ≥ 0.5 mg/kg (1.6 mg/m2), approximately 17-fold less than the maximum recommended human therapeutic dose based on body-surface area. Thiotepa interfered with spermatogenesis in hamsters at an IP dose of 1 mg/kg (4.1 mg/m2), approximately 7-fold less than the maximum recommended human therapeutic dose based on body-surface area.

14 CLINICAL STUDIES

CLINICAL STUDIES SECTION

TEPADINA was evaluated in a retrospective study of pediatric patients with class 3 beta-thalassemia who underwent allogeneic hematopoietic progenitor (stem) cell transplantation (HSCT) from a human leukocyte antigen (HLA)-identical sibling donor.  Twenty-five patients (10 male and 15 female) of median age 10 years (range, 5-16 years) were treated with intravenous busulfan at weight-based dosing from Day -10 to Day -7 pretransplant [see Table 1], intravenous TEPADINA 5 mg/kg twice on Day -6, intravenous cyclophosphamide 40 mg/kg/day on Day -5 to Day -2, and marrow infusion on Day 0.  All patients had also received precytoreduction with hydroxyurea, azathioprine and fludarabine prior to start of the preparative regimen.

Efficacy was based on the incidence of graft rejection (primary or late rejection). The incidence of graft rejection in these 25 patients using TEPADINA was 0% (95% CI: [0, 0.12]).  Of the 51 patients who received the same preparative regimen, historically, without TEPADINA, the incidence of graft rejection reported was 25.5% (95% CI: [0.13, 0.37]). 

16 HOW SUPPLIED/STORAGE AND HANDLING

HOW SUPPLIED SECTION

How Supplied

TEPADINA (thiotepa) for injection is a lyophilized white powder supplied in a carton containing one single-dose Type I clear glass vial with a rubber stopper (not made with natural rubber latex) or in an aluminum overwrap containing one single-dose multichamber flexible bag as:

TEPADINA 15 mg

One vial contains 15 mg thiotepa (NDC 70121-1630-1).

TEPADINA 100 mg

One vial contains 100 mg thiotepa (NDC 70121-1631-1).

TEPADINA 200 mg

One multichamber flexible bag contains 200 mg thiotepa and 200 mL 0.9% Sodium Chloride Injection (NDC 70121-2749-1).

TEPADINA 400 mg

One multichamber flexible bag contains 400 mg thiotepa and 400 mL 0.9% Sodium Chloride Injection (NDC 70121-1687-1).

Storage and Handling

TEPADINA multichamber flexible bag and vials must be stored and transported refrigerated at 2°C to 8°C (36°F to 46°F).  Do not freeze. Keep the bag in the aluminum overwrap in order to protect it from activation.

TEPADINA is a hazardous drug. Follow applicable special handling and disposal procedures.1

17 PATIENT COUNSELING INFORMATION

INFORMATION FOR PATIENTS SECTION

Hypersensitivity

Counsel patients on the signs and symptoms of hypersensitivity and to seek immediate emergency assistance if they develop any of these signs and symptoms [see Warnings and Precautions (5.2)].

 

Myelosuppression

Inform patients of the possibility of developing low blood cell counts and the need for hematopoietic progenitor cell infusion. Instruct patients to immediately report to their healthcare provider if bleeding or fever occurs [see Warnings and Precautions (5.1)].

 

Females and Males of Reproductive Potential

TEPADINA can cause fetal harm. Advise females receiving TEPADINA to avoid pregnancy during TEPADINA treatment and for 6 months after the last dose of TEPADINA [see Warnings and Precautions (5.8)].

Advise males with female sexual partners of reproductive potential to use effective contraception during TEPADINA treatment and for 1 year after the last dose of TEPADINA [see Use in Specific Populations (8.3)].

Advise females to report pregnancy immediately [see Warnings and Precautions (5.8)].

Advise patients that TEPADINA can produce infertility. Inform male patients about the possibility of sperm conservation before the start of therapy [see Use in Specific Populations (8.3)].

 

Lactation

Advise patients to avoid breastfeeding while receiving TEPADINA [see Use in Specific Populations (8.2)].

 

Secondary malignancies

Inform patients that TEPADINA can increase the risk of secondary malignancy [see Warnings and Precautions (5.7)].

Distributed by:

Amneal Pharmaceuticals LLC

Bridgewater, NJ  08807

for

ADIENNE SA

Switzerland

U.S. Pat. No. 9,931,458

Tepadina 15 mg Label NDC: 70121-1630-1

PACKAGE LABEL.PRINCIPAL DISPLAY PANEL

15mg vial label
15mg vial label

Tepadina 15 mg Carton NDC: 70121-1630-1

PACKAGE LABEL.PRINCIPAL DISPLAY PANEL

15mg carton
15mg carton

Tepadina 100 mg Label NDC: 70121-1631-1

PACKAGE LABEL.PRINCIPAL DISPLAY PANEL

100mg vial label
100mg vial label

Tepadina 100 mg Carton NDC: 70121-1631-1

PACKAGE LABEL.PRINCIPAL DISPLAY PANEL

100mg carton
100mg carton

Tepadina 200 mg Label NDC: 70121-2749-1

PACKAGE LABEL.PRINCIPAL DISPLAY PANEL

200mg label
200mg label

Tepadina 200 mg Carton NDC: 70121-2749-1

PACKAGE LABEL.PRINCIPAL DISPLAY PANEL

200mg carton
200mg carton

Tepadina 400 mg Label NDC: 70121-1687-1

PACKAGE LABEL.PRINCIPAL DISPLAY PANEL

400mg label
400mg label

Tepadina 400 mg Carton NDC: 70121-1687-1

PACKAGE LABEL.PRINCIPAL DISPLAY PANEL

400mg bag carton
400mg bag carton

DailyMed RxNorm Mappings#

RxCUI, RxNorm string, TTY table
RxCUIRxNorm stringTTYSPL version
1919209TEPADINA 100 MG InjectionPSN30
1919211TEPADINA 15 MG InjectionPSN30
2712234TEPADINA 200 MG InjectionPSN30
2734126TEPADINA 400 MG InjectionPSN30
1660004thiotepa 100 MG InjectionPSN30
1660009thiotepa 15 MG InjectionPSN30
2712232thiotepa 200 MG InjectionPSN30
2734124thiotepa 400 MG InjectionPSN30
1919209thiotepa 100 MG Injection [Tepadina]SBD30
1919211thiotepa 15 MG Injection [Tepadina]SBD30
2712234thiotepa 200 MG Injection [Tepadina]SBD30
2734126thiotepa 400 MG Injection [Tepadina]SBD30
1660004thiotepa 100 MG InjectionSCD30
1660009thiotepa 15 MG InjectionSCD30
2712232thiotepa 200 MG InjectionSCD30
2734124thiotepa 400 MG InjectionSCD30
1919209Tepadina 100 MG InjectionSY30
1919211Tepadina 15 MG InjectionSY30
2712234Tepadina 200 MG InjectionSY30
2734126Tepadina 400 MG InjectionSY30
1660004TSPA 100 MG InjectionSY30
1919209TSPA 100 MG Injection [Tepadina]SY30
1660009TSPA 15 MG InjectionSY30
1919211TSPA 15 MG Injection [Tepadina]SY30
2712232TSPA 200 MG InjectionSY30
2712234TSPA 200 MG Injection [Tepadina]SY30
2734124TSPA 400 MG InjectionSY30
2734126TSPA 400 MG Injection [Tepadina]SY30

DailyMed Pharmacologic Classes#

Class, Version, Type table
ClassVersionTypeEffective
THIOTEPA Pharmacologic Class Indexing2Indexing - Pharmacologic Class20180813

Product Linked Resources#

Resource, Code type, Value table
ResourceCode typeValueEquivalent identifiersSource image
BarcodeEAN-130370121163114GTIN-13: 0370121163114
EAN-13: 0370121163114
GTIN-12: 370121163114
UPC-A: 370121163114
GTIN storage (14 digits): 00370121163114
tepadina-27.jpg
BarcodeEAN-130370121168713GTIN-13: 0370121168713
EAN-13: 0370121168713
GTIN-12: 370121168713
UPC-A: 370121168713
GTIN storage (14 digits): 00370121168713
tepadina-30.jpg
BarcodeEAN-130370121274919GTIN-13: 0370121274919
EAN-13: 0370121274919
GTIN-12: 370121274919
UPC-A: 370121274919
GTIN storage (14 digits): 00370121274919
tepadina-29.jpg
Data codeData Matrixproduct nametepadina-31.jpg, tepadina-29.jpg, tepadina-27.jpg, tepadina-25.jpg

DailyMed Product Concepts#

Product concept, Relation, Version table
Product conceptRelationVersionEffective
b9d03845-c04b-46cb-bb7e-9c6cffe3c163Product name420250618
d48e4a3f-d6a3-47a1-9357-dd5939f6049dProduct name120250227
d4b5276b-261e-446e-ba03-7cf7bbc1d8afProduct name320220718

DailyMed Package Descriptions#

Package NDC, Product, Description table
Package NDCProductDescriptionFormQuantityStrengthSPL version
70121-1630-1TEPADINA1 in 1 BOXINJECTION, POWDER, FOR SOLUTION130
70121-1630-1TEPADINA1 in 1 VIAL, GLASSINJECTION, POWDER, FOR SOLUTION130
70121-1631-1TEPADINA1 in 1 VIAL, GLASSINJECTION, POWDER, FOR SOLUTION130
70121-1631-1TEPADINA1 in 1 BOXINJECTION, POWDER, FOR SOLUTION130
70121-1687-1TEPADINA1 in 1 BOXINJECTION, POWDER, LYOPHILIZED,130
70121-2749-1TEPADINA1 in 1 BOXINJECTION, POWDER, LYOPHILIZED,130

DailyMed Billing Units#

Package NDC, Billing unit, Product NDC table
Package NDCBilling unitProduct NDCDailyMed indexing SPLSPL versionEffective
70121-1630-1EA - Each70121-1630873c8973-886a-4688-a892-8c5e8dd1284912017-10-13
70121-1631-1EA - Each70121-16318c171a3b-fcba-4350-a7ee-3c62a282614512017-10-13
70121-2749-1EA - Each70121-27493f828d39-39e1-4897-a80c-f0f7a574ad4e12025-09-12

Products#

Every source-derived product name is available through these pages.

DailyMed product names page 1 of 1 · 3 matching rows.

NDC Codes#

Ingredients#

Every source-derived ingredient row is available through these pages.

DailyMed ingredient rows page 1 of 1 · 6 matching rows.

Source Document#

Source XML

Older Hydrated Versions#

Version, Effective date, Source table
VersionEffective dateSourceHydrated
272025-10-15monthly-update2026-06-03 17:42:51
252025-04-24full-release2026-05-31 21:40:50

Orange Book application contexts#

All distinct exact application/product contexts derived from this label’s complete NDC list are paginated below.

Orange Book application contexts page 1 of 1 · 1 matching rows.

Source provenance: Browse the complete Orange Book source catalog · source snapshot 43.

Orange Book products#

Current product rows page 1 of 1 · 4 matching rows.

Application-product, Trade name, Ingredient table
Application-productTrade nameIngredientStrengthDosage form / routeTE codesRLD / RSApproval date
N208264-001TEPADINATHIOTEPA15MG/VIALPOWDER / INTRACAVITARY, INTRAVENOUS, INTRAVESICALAPRLD, RS2017-01-26
N208264-002TEPADINATHIOTEPA100MG/VIALPOWDER / INTRACAVITARY, INTRAVENOUS, INTRAVESICALAPRLD, RS2017-01-26
N208264-003TEPADINA AND SODIUM CHLORIDETHIOTEPA200MGPOWDER / INTRAVENOUSRLD, RS2025-04-10
N208264-004TEPADINA AND SODIUM CHLORIDETHIOTEPA400MGPOWDER / INTRAVENOUSRLD, RS2026-01-15

Therapeutic equivalence codes#

Current TE-code rows page 1 of 1 · 2 matching rows.

Application-product, TE code table
Application-productTE code
N208264-001AP
N208264-002AP

Orange Book patents#

Current patent rows page 1 of 1 · 2 matching rows.

Application-product, Patent, Expiration table
Application-productPatentExpirationUse codeCoverage / statusSubmission date
N208264-00399314582037-05-31Drug product2025-05-09
N208264-00499314582037-05-31Drug product2026-02-12

Observed Orange Book product history#

Observed FDA ZIP history: Each table is queried independently by exact application/product key from successfully parsed Orange Book snapshots. Capture times identify archived source observations; absence or a change between snapshots is not inferred. FDA publication files that were not recoverable as structured ZIP data are not represented as states.

Product history page 1 of 3 · 96 observed states.

Captured, Edition, Application-product table
CapturedEditionApplication-productTrade nameStrengthDosage form / routeProduct TE source textRLD / RSApproval dateSource SHA-256
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2026-09-14 22:38:342026-08N208264-003TEPADINA AND SODIUM CHLORIDE200MGPOWDER / INTRAVENOUSRLD, RS2025-04-1084e616aacf4f…
2026-09-14 22:38:342026-08N208264-004TEPADINA AND SODIUM CHLORIDE400MGPOWDER / INTRAVENOUSRLD, RS2026-01-1584e616aacf4f…
2026-08-18 06:07:402026-07N208264-001TEPADINA15MG/VIALPOWDER / INTRACAVITARY, INTRAVENOUS, INTRAVESICALAPRLD, RS2017-01-26caaa826d4ba7…
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2026-08-18 06:07:402026-07N208264-003TEPADINA AND SODIUM CHLORIDE200MGPOWDER / INTRAVENOUSRLD, RS2025-04-10caaa826d4ba7…
2026-08-18 06:07:402026-07N208264-004TEPADINA AND SODIUM CHLORIDE400MGPOWDER / INTRAVENOUSRLD, RS2026-01-15caaa826d4ba7…
2026-02-19 14:30 UTC2026-02N208264-001TEPADINA15MG/VIALPOWDER / INTRACAVITARY, INTRAVENOUS, INTRAVESICALAPRLD, RS2017-01-26011fe1cb6892…
2026-02-19 14:30 UTC2026-02N208264-002TEPADINA100MG/VIALPOWDER / INTRACAVITARY, INTRAVENOUS, INTRAVESICALAPRLD, RS2017-01-26011fe1cb6892…
2026-02-19 14:30 UTC2026-02N208264-003TEPADINA AND SODIUM CHLORIDE200MGPOWDER / INTRAVENOUSRLD, RS2025-04-10011fe1cb6892…
2026-02-19 14:30 UTC2026-02N208264-004TEPADINA AND SODIUM CHLORIDE400MGPOWDER / INTRAVENOUSRLD, RS2026-01-15011fe1cb6892…
2025-12-14 10:44 UTC · 2 captures of this ZIP2025-12N208264-001TEPADINA15MG/VIALPOWDER / INTRACAVITARY, INTRAVENOUS, INTRAVESICALAPRLD, RS2017-01-2631067a03dcf5…
2025-12-14 10:44 UTC · 2 captures of this ZIP2025-12N208264-002TEPADINA100MG/VIALPOWDER / INTRACAVITARY, INTRAVENOUS, INTRAVESICALAPRLD, RS2017-01-2631067a03dcf5…
2025-12-14 10:44 UTC · 2 captures of this ZIP2025-12N208264-003TEPADINA AND SODIUM CHLORIDE200MGPOWDER / INTRAVENOUSRLD, RS2025-04-1031067a03dcf5…
2025-08-23 18:47 UTC2025-08N208264-001TEPADINA15MG/VIALPOWDER / INTRACAVITARY, INTRAVENOUS, INTRAVESICALAPRLD, RS2017-01-266a471c1ec25d…
2025-08-23 18:47 UTC2025-08N208264-002TEPADINA100MG/VIALPOWDER / INTRACAVITARY, INTRAVENOUS, INTRAVESICALAPRLD, RS2017-01-266a471c1ec25d…
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2025-03-22 03:13 UTC · 3 captures of this ZIP2025-03N208264-001TEPADINA15MG/VIALPOWDER / INTRACAVITARY, INTRAVENOUS, INTRAVESICALAPRLD, RS2017-01-26fd3edfee7708…
2025-03-22 03:13 UTC · 3 captures of this ZIP2025-03N208264-002TEPADINA100MG/VIALPOWDER / INTRACAVITARY, INTRAVENOUS, INTRAVESICALAPRLD, RS2017-01-26fd3edfee7708…
2025-02-26 10:13 UTC · 3 captures of this ZIP2025-02N208264-001TEPADINA15MG/VIALPOWDER / INTRACAVITARY, INTRAVENOUS, INTRAVESICALAPRLD, RS2017-01-26b8a1b40f171c…
2025-02-26 10:13 UTC · 3 captures of this ZIP2025-02N208264-002TEPADINA100MG/VIALPOWDER / INTRACAVITARY, INTRAVENOUS, INTRAVESICALAPRLD, RS2017-01-26b8a1b40f171c…
2025-01-19 17:59 UTC · 7 captures of this ZIP2025-01N208264-001TEPADINA15MG/VIALPOWDER / INTRACAVITARY, INTRAVENOUS, INTRAVESICALAPRLD, RS2017-01-2603ed91905a0d…
2025-01-19 17:59 UTC · 7 captures of this ZIP2025-01N208264-002TEPADINA100MG/VIALPOWDER / INTRACAVITARY, INTRAVENOUS, INTRAVESICALAPRLD, RS2017-01-2603ed91905a0d…
2024-12-13 21:23 UTC · 2 captures of this ZIP2024-12N208264-001TEPADINA15MG/VIALPOWDER / INTRACAVITARY, INTRAVENOUS, INTRAVESICALAPRLD, RS2017-01-262680178bc6a6…
2024-12-13 21:23 UTC · 2 captures of this ZIP2024-12N208264-002TEPADINA100MG/VIALPOWDER / INTRACAVITARY, INTRAVENOUS, INTRAVESICALAPRLD, RS2017-01-262680178bc6a6…
2024-09-14 05:58 UTC · 2 captures of this ZIP2024-09N208264-001TEPADINA15MG/VIALPOWDER / INTRACAVITARY, INTRAVENOUS, INTRAVESICALAPRLD, RS2017-01-265bbf6a4d5a75…
2024-09-14 05:58 UTC · 2 captures of this ZIP2024-09N208264-002TEPADINA100MG/VIALPOWDER / INTRACAVITARY, INTRAVENOUS, INTRAVESICALAPRLD, RS2017-01-265bbf6a4d5a75…
2024-11-08 22:44 UTC · 3 captures of this ZIP2024-11N208264-001TEPADINA15MG/VIALPOWDER / INTRACAVITARY, INTRAVENOUS, INTRAVESICALAPRLD, RS2017-01-26d8e5a09893c0…
2024-11-08 22:44 UTC · 3 captures of this ZIP2024-11N208264-002TEPADINA100MG/VIALPOWDER / INTRACAVITARY, INTRAVENOUS, INTRAVESICALAPRLD, RS2017-01-26d8e5a09893c0…
2024-10-29 15:01 UTC2024-10N208264-001TEPADINA15MG/VIALPOWDER / INTRACAVITARY, INTRAVENOUS, INTRAVESICALAPRLD, RS2017-01-26d06236e962d9…
2024-10-29 15:01 UTC2024-10N208264-002TEPADINA100MG/VIALPOWDER / INTRACAVITARY, INTRAVENOUS, INTRAVESICALAPRLD, RS2017-01-26d06236e962d9…
2024-08-13 05:28 UTC · 3 captures of this ZIP2024-08N208264-001TEPADINA15MG/VIALPOWDER / INTRACAVITARY, INTRAVENOUS, INTRAVESICALAPRLD, RS2017-01-2679d66fd596c7…
2024-08-13 05:28 UTC · 3 captures of this ZIP2024-08N208264-002TEPADINA100MG/VIALPOWDER / INTRACAVITARY, INTRAVENOUS, INTRAVESICALAPRLD, RS2017-01-2679d66fd596c7…
2024-07-13 05:37 UTC · 2 captures of this ZIP2024-07N208264-001TEPADINA15MG/VIALPOWDER / INTRACAVITARY, INTRAVENOUS, INTRAVESICALAPRLD, RS2017-01-26301d65b070ca…
2024-07-13 05:37 UTC · 2 captures of this ZIP2024-07N208264-002TEPADINA100MG/VIALPOWDER / INTRACAVITARY, INTRAVENOUS, INTRAVESICALAPRLD, RS2017-01-26301d65b070ca…
2024-06-18 03:08 UTC · 5 captures of this ZIP2024-06N208264-001TEPADINA15MG/VIALPOWDER / INTRACAVITARY, INTRAVENOUS, INTRAVESICALAPRLD, RS2017-01-261e350fbaab3a…
2024-06-18 03:08 UTC · 5 captures of this ZIP2024-06N208264-002TEPADINA100MG/VIALPOWDER / INTRACAVITARY, INTRAVENOUS, INTRAVESICALAPRLD, RS2017-01-261e350fbaab3a…
2024-05-31 18:47 UTC2024-05N208264-001TEPADINA15MG/VIALPOWDER / INTRACAVITARY, INTRAVENOUS, INTRAVESICALAPRLD, RS2017-01-268072bd15b7f6…
2024-05-31 18:47 UTC2024-05N208264-002TEPADINA100MG/VIALPOWDER / INTRACAVITARY, INTRAVENOUS, INTRAVESICALAPRLD, RS2017-01-268072bd15b7f6…

Observed Orange Book normalized TE history#

Normalized TE history page 1 of 2 · 78 observed states.

Captured, Edition, Application-product table
CapturedEditionApplication-productTE codeOrderSource SHA-256
2026-09-14 22:38:342026-08N208264-001AP184e616aacf4f…
2026-09-14 22:38:342026-08N208264-002AP184e616aacf4f…
2026-08-18 06:07:402026-07N208264-001AP1caaa826d4ba7…
2026-08-18 06:07:402026-07N208264-002AP1caaa826d4ba7…
2026-02-19 14:30 UTC2026-02N208264-001AP1011fe1cb6892…
2026-02-19 14:30 UTC2026-02N208264-002AP1011fe1cb6892…
2025-12-14 10:44 UTC · 2 captures of this ZIP2025-12N208264-001AP131067a03dcf5…
2025-12-14 10:44 UTC · 2 captures of this ZIP2025-12N208264-002AP131067a03dcf5…
2025-08-23 18:47 UTC2025-08N208264-001AP16a471c1ec25d…
2025-08-23 18:47 UTC2025-08N208264-002AP16a471c1ec25d…
2025-03-22 03:13 UTC · 3 captures of this ZIP2025-03N208264-001AP1fd3edfee7708…
2025-03-22 03:13 UTC · 3 captures of this ZIP2025-03N208264-002AP1fd3edfee7708…
2025-02-26 10:13 UTC · 3 captures of this ZIP2025-02N208264-001AP1b8a1b40f171c…
2025-02-26 10:13 UTC · 3 captures of this ZIP2025-02N208264-002AP1b8a1b40f171c…
2025-01-19 17:59 UTC · 7 captures of this ZIP2025-01N208264-001AP103ed91905a0d…
2025-01-19 17:59 UTC · 7 captures of this ZIP2025-01N208264-002AP103ed91905a0d…
2024-12-13 21:23 UTC · 2 captures of this ZIP2024-12N208264-001AP12680178bc6a6…
2024-12-13 21:23 UTC · 2 captures of this ZIP2024-12N208264-002AP12680178bc6a6…
2024-09-14 05:58 UTC · 2 captures of this ZIP2024-09N208264-001AP15bbf6a4d5a75…
2024-09-14 05:58 UTC · 2 captures of this ZIP2024-09N208264-002AP15bbf6a4d5a75…
2024-11-08 22:44 UTC · 3 captures of this ZIP2024-11N208264-001AP1d8e5a09893c0…
2024-11-08 22:44 UTC · 3 captures of this ZIP2024-11N208264-002AP1d8e5a09893c0…
2024-10-29 15:01 UTC2024-10N208264-001AP1d06236e962d9…
2024-10-29 15:01 UTC2024-10N208264-002AP1d06236e962d9…
2024-08-13 05:28 UTC · 3 captures of this ZIP2024-08N208264-001AP179d66fd596c7…
2024-08-13 05:28 UTC · 3 captures of this ZIP2024-08N208264-002AP179d66fd596c7…
2024-07-13 05:37 UTC · 2 captures of this ZIP2024-07N208264-001AP1301d65b070ca…
2024-07-13 05:37 UTC · 2 captures of this ZIP2024-07N208264-002AP1301d65b070ca…
2024-06-18 03:08 UTC · 5 captures of this ZIP2024-06N208264-001AP11e350fbaab3a…
2024-06-18 03:08 UTC · 5 captures of this ZIP2024-06N208264-002AP11e350fbaab3a…
2024-05-31 18:47 UTC2024-05N208264-001AP18072bd15b7f6…
2024-05-31 18:47 UTC2024-05N208264-002AP18072bd15b7f6…
2022-06-29 02:47 UTC · 2 captures of this ZIP2022-06N208264-001AP15c6f7cd8ea54…
2022-06-29 02:47 UTC · 2 captures of this ZIP2022-06N208264-002AP15c6f7cd8ea54…
2022-04-08 23:34 UTC2022-04N208264-001AP15d02ea3f76ae…
2022-04-08 23:34 UTC2022-04N208264-002AP15d02ea3f76ae…
2022-04-04 05:41 UTC2022-04N208264-001AP14b0b4de00fa7…
2022-04-04 05:41 UTC2022-04N208264-002AP14b0b4de00fa7…
2022-03-09 01:35 UTC2022-03N208264-001AP1bb7c543d1eb4…
2022-03-09 01:35 UTC2022-03N208264-002AP1bb7c543d1eb4…

Observed Orange Book patent history#

Captured, Edition, Application-product table
CapturedEditionApplication-productPatentExpirationUse codeCoverage / statusSubmission dateSource SHA-256
2026-09-14 22:38:342026-08N208264-00399314582037-05-31Drug product2025-05-0984e616aacf4f…
2026-09-14 22:38:342026-08N208264-00499314582037-05-31Drug product2026-02-1284e616aacf4f…
2026-08-18 06:07:402026-07N208264-00399314582037-05-31Drug product2025-05-09caaa826d4ba7…
2026-08-18 06:07:402026-07N208264-00499314582037-05-31Drug product2026-02-12caaa826d4ba7…
2026-02-19 14:30 UTC2026-02N208264-00399314582037-05-31Drug product2025-05-09011fe1cb6892…
2025-12-14 10:44 UTC · 2 captures of this ZIP2025-12N208264-00399314582037-05-31Drug product2025-05-0931067a03dcf5…
2025-08-23 18:47 UTC2025-08N208264-00399314582037-05-31Drug product2025-05-096a471c1ec25d…
2026-07-26 02:55 UTC · 3 captures of this ZIP2026-06N208264-00399314582037-05-31Drug product2025-05-09a50c72e98297…
2026-07-26 02:55 UTC · 3 captures of this ZIP2026-06N208264-00499314582037-05-31Drug product2026-02-12a50c72e98297…

Observed Orange Book exclusivity history#

Exclusivity history page 1 of 3 · 82 observed states.

Captured, Edition, Application-product table
CapturedEditionApplication-productExclusivity codeExpirationSource SHA-256
2025-01-19 17:59 UTC · 7 captures of this ZIP2025-01N208264-001ODE-1292024-01-2603ed91905a0d…
2025-01-19 17:59 UTC · 7 captures of this ZIP2025-01N208264-002ODE-1292024-01-2603ed91905a0d…
2024-12-13 21:23 UTC · 2 captures of this ZIP2024-12N208264-001ODE-1292024-01-262680178bc6a6…
2024-12-13 21:23 UTC · 2 captures of this ZIP2024-12N208264-002ODE-1292024-01-262680178bc6a6…
2024-09-14 05:58 UTC · 2 captures of this ZIP2024-09N208264-001ODE-1292024-01-265bbf6a4d5a75…
2024-09-14 05:58 UTC · 2 captures of this ZIP2024-09N208264-002ODE-1292024-01-265bbf6a4d5a75…
2024-11-08 22:44 UTC · 3 captures of this ZIP2024-11N208264-001ODE-1292024-01-26d8e5a09893c0…
2024-11-08 22:44 UTC · 3 captures of this ZIP2024-11N208264-002ODE-1292024-01-26d8e5a09893c0…
2024-10-29 15:01 UTC2024-10N208264-001ODE-1292024-01-26d06236e962d9…
2024-10-29 15:01 UTC2024-10N208264-002ODE-1292024-01-26d06236e962d9…
2024-08-13 05:28 UTC · 3 captures of this ZIP2024-08N208264-001ODE-1292024-01-2679d66fd596c7…
2024-08-13 05:28 UTC · 3 captures of this ZIP2024-08N208264-002ODE-1292024-01-2679d66fd596c7…
2024-07-13 05:37 UTC · 2 captures of this ZIP2024-07N208264-001ODE-1292024-01-26301d65b070ca…
2024-07-13 05:37 UTC · 2 captures of this ZIP2024-07N208264-002ODE-1292024-01-26301d65b070ca…
2024-06-18 03:08 UTC · 5 captures of this ZIP2024-06N208264-001ODE-1292024-01-261e350fbaab3a…
2024-06-18 03:08 UTC · 5 captures of this ZIP2024-06N208264-002ODE-1292024-01-261e350fbaab3a…
2024-05-31 18:47 UTC2024-05N208264-001ODE-1292024-01-268072bd15b7f6…
2024-05-31 18:47 UTC2024-05N208264-002ODE-1292024-01-268072bd15b7f6…
2022-06-29 02:47 UTC · 2 captures of this ZIP2022-06N208264-001ODE-1292024-01-265c6f7cd8ea54…
2022-06-29 02:47 UTC · 2 captures of this ZIP2022-06N208264-002ODE-1292024-01-265c6f7cd8ea54…
2022-04-08 23:34 UTC2022-04N208264-001ODE-1292024-01-265d02ea3f76ae…
2022-04-08 23:34 UTC2022-04N208264-002ODE-1292024-01-265d02ea3f76ae…
2022-04-04 05:41 UTC2022-04N208264-001ODE-1292024-01-264b0b4de00fa7…
2022-04-04 05:41 UTC2022-04N208264-002ODE-1292024-01-264b0b4de00fa7…
2019-12-13 00:20 UTC2019-12N208264-001I-7472020-01-2674a2ff9319b5…
2019-12-13 00:20 UTC2019-12N208264-001ODE-1292024-01-2674a2ff9319b5…
2019-12-13 00:20 UTC2019-12N208264-002I-7472020-01-2674a2ff9319b5…
2019-12-13 00:20 UTC2019-12N208264-002ODE-1292024-01-2674a2ff9319b5…
2022-03-09 01:35 UTC2022-03N208264-001ODE-1292024-01-26bb7c543d1eb4…
2022-03-09 01:35 UTC2022-03N208264-002ODE-1292024-01-26bb7c543d1eb4…
2021-12-28 21:50 UTC2021-12N208264-001ODE-1292024-01-26782e0a99824c…
2021-12-28 21:50 UTC2021-12N208264-002ODE-1292024-01-26782e0a99824c…
2021-05-05 16:15 UTC · 3 captures of this ZIP2021-05N208264-001ODE-1292024-01-2687673890dc5c…
2021-05-05 16:15 UTC · 3 captures of this ZIP2021-05N208264-002ODE-1292024-01-2687673890dc5c…
2021-03-12 10:30 UTC2021-03N208264-001ODE-1292024-01-265aa47cf7b7d7…
2021-03-12 10:30 UTC2021-03N208264-002ODE-1292024-01-265aa47cf7b7d7…
2020-12-22 03:56 UTC2020-12N208264-001I-7472020-01-268869cabd3fbd…
2020-12-22 03:56 UTC2020-12N208264-001ODE-1292024-01-268869cabd3fbd…
2020-12-22 03:56 UTC2020-12N208264-002I-7472020-01-268869cabd3fbd…
2020-12-22 03:56 UTC2020-12N208264-002ODE-1292024-01-268869cabd3fbd…

openFDA label cross-check#

OpenFDA label data provides additional search and identifier links. DailyMed’s Structured Product Label is the canonical label on FDA.report. Matching records are deduplicated before they are shown below.

Matched openFDA labels page 1 of 1 · 1 matching rows.

Brand, Generic, Manufacturer table
BrandGenericManufacturerSPL set IDEffective dateAvailable safety fieldsJoin
TEPADINATHIOTEPAAmneal Pharmaceuticals LLC559e353c-2dc0-16ba-e054-00144ff8d46c2026-01-30Boxed warning, Warnings, Adverse reactionsExact identifier
ndc (package): 70121-1630-1
ndc (package): 70121-1631-1
ndc (package): 70121-1687-1
ndc (package): 70121-2749-1
ndc (product): 70121-1630
ndc (product): 70121-1687
ndc (product): 70121-1631
ndc (product): 70121-2749
ndc11 (package): 70121168701
ndc11 (package): 70121163001
ndc11 (package): 70121274901
ndc11 (package): 70121163101
spl id: 4f44c872-f02d-48cc-b2a4-4e05d2422b72
spl set id: 559e353c-2dc0-16ba-e054-00144ff8d46c

Reported adverse events (FAERS/openFDA)#

Adverse event summaries are temporarily unavailable. Other product information remains available.