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5 / 488 resultsresearch The potential role of acetylcholine receptors in acne inversa (HS) pathogenesis
Acetylcholine receptors might be involved in the development of acne inversa and smoking could worsen the condition.
research The Muscarinic Acetylcholine Receptor in Dermal Papilla Cells Regulates Hair Growth
Muscarinic acetylcholine receptors in skin cells help regulate and promote hair growth.
research The muscarinic acetylcholine receptor in dermal papilla cells regulates hair growth
Muscarinic acetylcholine receptors help regulate and promote hair growth.
research What causes acne inversa (or hidradenitis suppurativa)? – the debate continues
The exact cause of hidradenitis suppurativa is still unknown.
research 307 Phenotypic-genotypic expansion of plectinopathy in a patient with muscular dystrophy and immune-mediated myasthenia gravis
A patient with a new PLEC gene mutation showed symptoms of both muscular dystrophy and myasthenia gravis, which improved with steroid treatment.
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5 / 1000+ resultscommunity Horrible news, Stemson Therapeutics has shut down
Stemson Therapeutics has shut down, disappointing those seeking a hair loss cure. Current treatments like minoxidil, finasteride, and dutasteride are discussed, with some users experiencing side effects and exploring alternatives like PP405.
community Targeting multiple AGA mechanisms with commonly available substances
community Protac degradation of the androgen receptor in mice shows good efficacy and no systemic drug could be found
The efficacy of degrading the androgen receptor through dermal application in DP cells, a delivery system for topical drugs that involves dissolving microneedles, and rosemary oil as an alternative anti-androgen.
community 5ar alpha reductase stimulation is different depending on whether it’s type 1 or 2
The conversation discusses how different factors can stimulate type 1 and type 2 isoforms of 5-alpha reductase, which are enzymes linked to hair loss. Specific treatments mentioned include oral Dutasteride and topical Finasteride.
community Fluridil degrades the androgen receptor.
Fluridil degrades androgen receptors, which are prevalent in the scalp and other tissues. People with androgenetic alopecia (AGA) may have higher expression of these receptors and 5AR activity in affected scalp areas.