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research LY191704: a selective, nonsteroidal inhibitor of human steroid 5 alpha-reductase type 1.
LY191704 is a compound that effectively blocks a specific enzyme involved in hormone conversion and could help treat enlarged prostate and hair loss.
research Finasteride
research Market Analysis of 5α-Reductase Inhibitor
The market for these drugs is expected to grow.
research Risks Associated with 5α-Reductase Inhibitor Use: Analysis of Adverse Drug Reactions Reported to EudraVigilance
5α-Reductase inhibitors, like finasteride, can cause serious, persistent side effects not always listed in official drug information.
research Crystal structure of steroid reductase SRD5A reveals conserved steroid reduction mechanism
The structure of SRD5A reveals how it reduces steroids, aiding drug design for related health conditions.
research Azithromycin and Roxithromycin define a new family of “senolytic” drugs that target senescent human fibroblasts
Azithromycin and Roxithromycin can remove aging cells and may help with anti-aging.
research Activin B Promotes Epithelial Wound Healing In Vivo through RhoA-JNK Signaling Pathway
Activin B helps heal skin wounds and grow hair by activating a specific cell signaling pathway.
research Dendritic epidermal T cells secreting exosomes promote the proliferation of epidermal stem cells to enhance wound re-epithelialization
Dendritic epidermal T cells help wounds heal faster by boosting skin stem cell growth.
research Characterization of a new, inducible transgenic mouse model with GFP expression in melanocytes and their precursors
A new mouse model helps study melanocyte cells using GFP expression.
research Activation and regulation of the granulation tissue derived cells with stemness-related properties
Granulation tissue-derived cells can aid wound healing and serve as an alternative source of stem cells for tissue repair.
research Expression of keratins K6 and K16 in regenerating mouse epidermis is less restricted by cell replication than the expression of K1 and K10.
Keratins K6 and K16 are expressed more freely in regenerating mouse skin than K1 and K10.