PP405 trials have completed phase 2a, showing promising results with a 31% stat for hair density increase, and are moving directly to phase 3. Detailed results will be presented at a medical conference in 2026.
The user has been using a hair loss treatment protocol including topical dutasteride, minoxidil with tretinoin, ketoconazole shampoo, microneedling, a laser cap, and vitamin D for 15 weeks, showing impressive progress. Feedback suggests continuing medical therapy for 12-24 months before considering a hair transplant.
MCL-1 protein may help maintain hair follicles in the growth phase and prevent miniaturization. There is interest in experimental treatments like exosomes, peptides, or stem cell serums to upregulate MCL-1 for hair loss, especially for those not using minoxidil or finasteride.
Hair loss may be linked to the GPR133 receptor, independent of the androgen receptor pathway. Treatments like finasteride, dutasteride, minoxidil, RU58841, and KX-826 show varying results, with hair loss persisting due to high testosterone and GPR133's role.
OrganTech is working on regenerating hair and teeth, with positive results in mice, but skepticism remains about progress for humans. Users express frustration over the lack of advancements in human hair loss treatments, despite ongoing research and trials.
The conversation discusses various absurd theories about the causes of male pattern baldness, with some users suggesting treatments like oral dutasteride. It highlights misinformation and humorous myths, such as hair loss being linked to testosterone levels or masturbation.
The conversation discusses the availability and legitimacy of a hair loss treatment called PP405-3HP. Users express skepticism about its release and reference patent information.
Poor sleep quality may affect hair growth cycles by disrupting the body's natural clock and stress hormones. The focus should be on improving sleep to support overall health, including hair growth, rather than relying solely on treatments like Minoxidil, finasteride, or RU58841.
The conversation discusses various hair loss treatments, including pyrilutamide, RU58841, topical dutasteride, oral minoxidil, and oral finasteride/dutasteride. It also mentions potential treatments like PP405, Verteporfin, GT20029, and AMP303.
A woman is frustrated with her hair loss and the slow, ineffective healthcare system in Canada. She has tried treatments like minoxidil, doxycycline, and kenalog injections, but continues to experience painful inflammation and hair loss.
Federal funding cuts have delayed PP405 research, affecting hair loss treatment progress, though clinical trials will continue. The discussion highlights PP405's potential compared to minoxidil and finasteride and stresses the importance of government-funded research.
The FDA policy change may speed up approval for hair loss drugs like PP405, VDPHL-01, and Breezula by potentially eliminating the need for a second confirmatory Phase 3 trial. Approval timelines could be as early as 2028 for some treatments if Phase 3 results are strong.
Verteporfin is being explored for hair regeneration, with unofficial trials and updates shared online. Efforts are being made to encourage more surgeons to trial verteporfin for donor hair regeneration.
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.
Transplanting mice skin to humans is not feasible due to immune rejection, but some suggest genetic modification or immune suppression could make it possible. Xenograft hair transplants are discouraged.
A 57-year-old man with male pattern hair loss and insulin resistance experienced hair regrowth and weight loss after using tirzepatide, without other hair treatments. Dysregulated glucose metabolism is linked to hair loss, with tirzepatide potentially improving hair density by normalizing insulin resistance.
Insulin resistance may increase DHT production, contributing to hair loss, and addressing it through diet, nutrients, and natural DHT blockers like saw palmetto and pumpkin seed oil could help reverse hair loss. Some users prefer medications like finasteride for more effective results.
The conversation discusses the best ethanol and propylene glycol ratio for homemade topical finasteride, with a focus on absorption and drying issues. The user shares their experience using a 50% propylene glycol, 30% ethanol, and 20% water solution, and considers adjusting the ethanol content for better results.
JXL082 is not the same as PP405, leading to a halt in sales and a plan to synthesize the real PP405. There is skepticism about the safety and effectiveness of JXL082 and PP405, with concerns about patent issues and the long-term impact on hair growth.
The conversation is about enhancing dermarolling for hair loss by using topical peptides like tb-500 or GHK-Cu to aid in healing and hair growth, and whether anyone has experienced significant results from this method.
Mango oil may inhibit DKK1 and DHT, potentially aiding hair growth by activating the Wnt signaling pathway. A user plans to test mango leaves juice and other Ayurvedic products for hair regrowth.
The post discusses a theory that hair regrowth after transplant is due to the angiogenesis process (new blood vessels forming), not because the transplanted hair is unaffected by DHT. The responses highlight the established belief in 'donor dominance' (the importance of the hair's origin in transplantation) and skepticism about the new theory.
DUPA and retrograde alopecia may not be solely DHT-based, and a biopsy is crucial for accurate diagnosis and treatment. Treatments mentioned include dutasteride, oral minoxidil, pioglitazone, clobetasol, calcipotriol, ketoconazole, and doxycycline, depending on the specific condition.
Dr. Muñoz's discovery suggests that targeting potassium channels in fibroblasts could reactivate hair growth, offering new treatment possibilities for alopecia. Potential strategies include using minoxidil, diazoxide, and other potassium channel openers, as well as bioelectric devices and direct growth factor applications.
A user proposed genetically engineering scalp stem cells to stop androgen receptors from causing hair loss. Others discussed the feasibility, existing research, and potential issues with this approach, including targeting the correct cells and unintended effects.
A user is interested in Absci's AI-driven antibody platform, ABS-201, for treating androgenetic alopecia, which shows promising preclinical results and potential for hair regrowth and pigmentation restoration. However, concerns are raised about the drug's development timeline and its advantages compared to existing treatments.
PP405 aims to reactivate hair follicle stem cells to promote hair growth, but its effectiveness is debated. Some users are skeptical, citing past failures of similar treatments and questioning the company's claims.
Gut microbiota significantly influences androgen metabolism, impacting hair loss treatments like finasteride. Probiotics, dietary changes, and fecal microbiota transplants may help manage DHT levels and improve hair health.
The conversation discusses natural methods for addressing male pattern baldness, with the original poster using a plant-based diet, herbs, scalp massages, pumpkin seed oil, and dermapen treatments, while avoiding pharmaceuticals like minoxidil and finasteride due to concerns about side effects. Other users suggest that pharmaceuticals like finasteride may be necessary for significant hair loss, but the original poster remains committed to natural approaches.