Lanoxin Injection, Solution
Product Images NDC 70515-261
View Photos of Packaging, Regulatory Labels, and Product Appearance
Product Visual Gallery
This gallery contains 6 technical images submitted to the FDA as part of the official labeling for Lanoxin (NDC 70515-261). Unlike standard consumer photos, these assets often include clinical data figures, molecular chemical structures, and official manufacturer packaging layouts.
As provided by Covis Pharma Us, 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.
Covis Logo (Image 02)
Principal Display Panel (Adult Carton Label)
LANOXIN (digoxin) Injection is a medication administered intravenously or intramuscularly. It contains 500 meg (0.5 mg) of digoxin in 2 mL, which translates to 250 meg (0.25 mg) per mL. The dosage information is available in the provided text. The text contains some garbled or unreadable characters.*
Principal Display Panel (Pediatric Carton Label)
Image 05
LANOXIN® (digoxin) Injection Pediatric 100 mcg (0.1 mg) in 1 mL is a sterile solution for intravenous or intramuscular injection. It does not require dilution. It is made up of 425% (W) propylene glycol and 10% alcohol (V), sodium phosphate 0.17%, citric acid anhydrous 0.08%. Dosage information is available for prescribing physicians. It should be stored at 25°C (77°F) with excursions permitted to 15-30°C (59-86°F). This product is USP-Certified and should be protected from light.*
Image 06
This is a prescription medication called LANOXIN® (digoxin) Injection Pediatric that comes in a vial for intravenous use. It contains digoxin and is used to treat heart failure and certain types of irregular heartbeat. The medication should be stored at room temperature and protected from light. The prescribing information should be consulted for dosage instructions. There is also mention of the medication being manufactured and sold by a specific company.*
* These product label images have been analyzed using experimental machine learning. Please verify findings with the primary label text.