Furosemide Injection
Product Images NDC 16729-502
View Photos of Packaging, Regulatory Labels, and Product Appearance
Product Visual Gallery
This gallery contains 7 technical images submitted to the FDA as part of the official labeling for Furosemide (NDC 16729-502). Unlike standard consumer photos, these assets often include clinical data figures, molecular chemical structures, and official manufacturer packaging layouts.
As provided by Accord Healthcare, Inc., these visuals offer a comprehensive scientific overview of the product's physical and chemical identity, aiding pharmacists and researchers in product verification and study.
Product Images & Figures Index
10 mL Vial Carton (Furosemide Inj 10ml Carton)
10 mL Vial Label (Furosemide Inj 10ml Label)
The text describes a medication called Furosemide Injection, USP, which is available in a single dose vial of 10 mL. Each mL contains 10 mg of Furosemide USP and 7.4 mg of sodium chloride (or osmolarity) in water for injection, with pH ranging from 8 to 9.3. The medication is meant for intramuscular or intravenous use only, and unused portions should be discarded. The injection should be clear and colorless, and protected from light while stored in a temperature range of 20°C to 26°C (66° to 77°F). The manufacturing company is Accord Healthcare, with manufacturing done by Intas Pharmaceuticals Limited in India.*
2 mL Vial Carton (Furosemide Inj 2ml Carton)
2 mL Vial Label (Furosemide Inj 2ml Label)
This is a warning label and product information for Furosemide, a medication administered via injection. The label includes the NDC number, dosage information, manufacturer details, and batch code. The medication is stored at room temperature and is manufactured by Intas Pharmaceuticals Limted in India and distributed by Accord Healthcare in the United States. The text also provides directions for use and a caution to discard unused portions.*
4 mL Vial Carton (Furosemide Inj 4ml Carton)
4 mL Vial Label (Furosemide Inj 4ml Label)
* These product label images have been analyzed using experimental machine learning. Please verify findings with the primary label text.