Flumisch Minoxidil Foam Aerosol, Foam
Product Images NDC 85212-0001

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Product Visual Gallery

This gallery contains 2 technical images submitted to the FDA as part of the official labeling for Flumisch Minoxidil Foam (NDC 85212-0001). Unlike standard consumer photos, these assets often include clinical data figures, molecular chemical structures, and official manufacturer packaging layouts.

As provided by Beijing Junge Technology Co., Ltd., these visuals offer a comprehensive scientific overview of the product's physical and chemical identity, aiding pharmacists and researchers in product verification and study.

FDA Label Image

Minoxidil Foam (00)

Minoxidil Foam (00)
This is a description of a hair growth foam product containing Minoxidil and Biotin by the brand FluMisch. The foam is designed to reactivate hair follicles to stimulate regrowth and has been clinically proven to regrow hair. It is fast-acting, non-irritating, non-greasy, and easy to use. The package includes a one-month supply in a 60ml can. Key instructions include using the foam twice daily on the scalp and massaging it in with the included brush. The product is dermatologist recommended and also contains ingredients such as butane and cetyl alcohol. Detailed directions, warnings, and precautions on usage are provided on the packaging and leaflet.*
FDA Label Image

2d350318 8056 6ea6 E063 6294a90a1dfd

2d350318 8056 6ea6 E063 6294a90a1dfd
This is a product description for Flumisch Topical Minoxidil with Biotin hair growth foam. It is clinically proven to regrow hair and reactivate hair follicles to stimulate regrowth. The foam is fast-acting, non-irritating, and non-greasy. It is recommended by dermatologists and comes in a one-month supply in a 60ml can. The ingredients include Minoxidil 5%, Biotin 5%, and other inactive ingredients. The product is made by JunGe Technology Co., Ltd. and sold by Flumisch US. The package contains safety warnings, directions for use, and information on potential side effects.*

* These product label images have been analyzed using experimental machine learning. Please verify findings with the primary label text.