AH-001 is a new topical treatment designed to degrade androgen receptors, targeting the root cause of androgenetic alopecia without the side effects of oral treatments like finasteride. It has shown a strong safety profile and good local tolerability in early trials.
Iontophoresis and sonophoresis can enhance drug delivery into the scalp. Combining these methods may improve the effectiveness of topical treatments like dutasteride and certain peptides.
A 19-year-old male experienced significant hair loss, initially thought to be male pattern baldness (MPB), and used minoxidil and briefly finasteride. After realizing the issue was telogen effluvium (TE), he improved his diet and supplemented with vitamins, which led to substantial hair regrowth.
A 17-year-old is experiencing diffuse thinning, dandruff, body hair shedding, and other symptoms, possibly linked to seborrheic dermatitis or telogen effluvium. They are using ketoconazole shampoo and considering blood tests to check for thyroid issues or deficiencies.
The user experienced significant hair loss after extended fasting, initially thought to be Telogen Effluvium, but later suspected male pattern baldness. They tried finasteride briefly but stopped due to concerns about side effects, and are unsure if the hair loss is due to Telogen Effluvium or another cause.
HairClone is developing cell replacement treatments to rejuvenate and generate hair follicles, and has launched a crowdfunding campaign. A user expressed skepticism about the need for crowdfunding.
A quercetin-encapsulated and polydopamine-integrated nanosystem (PDA@QLipo) shows promise for treating androgenetic alopecia by reshaping the perifollicular microenvironment, outperforming minoxidil in hair regeneration. The nanosystem promotes cell proliferation, hair follicle renewal, and recovery by scavenging reactive oxygen species and enhancing neovascularity.
The conversation discusses using hair follicle dermal papilla exosomes for hair loss treatment. It inquires about purchasing options for this treatment.
Scientists have successfully grown functional hair follicles in the lab, marking a significant advancement in hair regeneration research. A user shared their personal experience with hair loss treatments, including Minoxidil and Finasteride, and plans to share a detailed protocol for hair restoration.
The user experienced hair thinning from chromium and alpha lipoic acid supplements, which stopped after discontinuing them. Someone mentioned this could be telogen effluvium, a temporary condition.
Balding scalps have more androgen receptors, leading to increased TGF-beta, which causes blood vessel loss and hair follicle miniaturization. Blocking androgen signaling and TGF-beta may help prevent hair loss.
AMP-303 and AMP-601 are new hair loss treatments targeting dermal papilla cells, with AMP-303 showing early efficacy in transitioning vellus hairs to terminal hairs after one injection. Further clinical trials are planned, and these treatments are seen as promising due to their biologic approach and less frequent application compared to daily treatments.
A South Korean company, Therazyne, has developed a promising hair loss treatment using a WNT chain surrogate that binds to Frizzled 7, with human follicle testing expected soon. Current treatments like minoxidil and finasteride are not seen as cures, and while optimism exists for future solutions like PP405, approval processes are lengthy.
Orient Bio is developing a PLGA formulated version of Cyclosporine A to stimulate hair growth without its immunosuppressant effects. Users discuss various treatments like Clascoterone, PP405, minoxidil, and tacrolimus, expressing hope for new developments and sharing personal experiences with these treatments.
The conversation discusses GT20029, a drug in Phase II trials that targets androgen receptors with minimal systemic effects, and TDM-105795, a growth stimulant with a different mechanism than minoxidil that may revive papilla stem cells. Both are potential new treatments for hair loss.
The user is using oral minoxidil, ghk-cu, and HGH for hair regrowth, noticing small vellus hairs on the crown. They avoid traditional DHT blockers like finasteride due to side effects, despite skepticism from others about the effectiveness of ghk-cu.
OP injured their temple using derma rolling and tretinoin, causing peeling and potential hair follicle damage. Users suggest the injury might be permanent, possibly resulting in scar tissue where hair won't grow.
Stem cell-related treatments and drugs like RCGD423 and WAY are being tested for hair growth. Clinics are conducting tests on patients who haven't had previous treatments.
The user changed their hair loss treatment in October/November, experienced increased shedding, and now sees no new hair growth, with a worsening condition and a possible bald spot. They also have severe seborrheic dermatitis, which may be affecting their scalp and hair loss.
Pelage is recruiting for phase 2 trials, showing promise for treating bald regions. The discussion highlights its potential effectiveness based on its mechanism of action.
The conversation discusses concerns that Anagenic's version of GT20029 might not be as effective or safe as Kintor's, with comparisons to issues faced by pyrilutamide. The chemical structure of the drug has been published.
A 30-year-old woman with a history of anemia and low vitamin D experienced hair shedding, which improved after addressing nutrient deficiencies. Despite regrowth of terminal hairs, her dermatologist recommended treatments like minoxidil and spironolactone to prevent future bald spots, but she is cautious due to family history of hormone-related cancers.
Low testosterone and estradiol may contribute to hair loss, and blocking DHT without sufficient hormone levels might hinder regrowth. The discussion highlights the importance of hormone balance, with some considering supplements and lifestyle changes to support hair health.
Hair cloning technology is advancing, with clinical trials for improved methods expected by 2028 and 2029, potentially offering a solution for hair loss if donor follicles remain. Organtech's expansion into other biotech areas may secure funding, but the effectiveness of cloning depends on the availability of androgen-resistant donor follicles.
Exploring the idea of transplanting miniaturized hair follicles to healthier areas to potentially reverse hair loss, with concerns about DHT sensitivity and scar tissue formation. The conversation also humorously considers using mice for hair growth experiments.
The conversation discusses hair loss treatments, specifically mentioning Minoxidil, finasteride, and RU58841. It also references Epibiotech's hair multiplication and cell therapy as potential solutions.
A drug that regrows body parts, but not hair, sparking debate on hair loss treatments. Discussions include the use of finasteride, dutasteride, and the potential for new methods to restore hair.
Hair/scalp cloning for unlimited transplants is likely a decade away, with prior transplants not significantly affecting future options. Advances in AI and research in wound-induced hair neogenesis are promising, but infrastructure and technology constraints remain challenges.