The conversation discusses potential hair loss treatments, including clascoterone, GT20029, ET-02, VDPHL01, and PP405, with hopes for new options by 2028. Current treatments like minoxidil and finasteride are expected to remain effective, with clascoterone and VDPHL01 as promising alternatives.
Peptides, specifically GHK-Cu, are being considered for hair growth benefits, such as increasing blood flow to the scalp and preventing hair follicle shrinkage. A user reported starting GHK-Cu after hearing it made a friend's hair thicker.
Exosome stem cell treatment for hair loss, which is expensive and reportedly effective, but its popularity has declined. The conversation also mentions Minoxidil, finasteride, and RU58841 as treatments.
A discount code for 20% off at Anageninc is shared, valid for purchasing RU58841 or Pyri from May 10-11, 2025. The conversation focuses on hair loss treatments using RU58841.
RT1640, a combination of cyclosporin A, minoxidil, and RT175, is discussed as a potential treatment for hair regrowth and repigmentation. The unique formulation aims to enhance hair follicle growth and restore hair pigment without the negative side effects of immunosuppressants.
People are hopeful for a permanent hair loss solution by the 2030s, considering options like hair cloning and treatments like pp405. Synthetic hair transplants have been attempted but are not effective long-term.
Copper peptides, specifically GHK-Cu, are discussed as a potential addition to hair loss treatments, possibly working synergistically with Minoxidil to convert vellus hair into terminal hair. The effectiveness and credibility of copper peptides are questioned due to the lack of widespread discussion and potential conflict of interest from the product's creator.
Stem cell therapy for hair loss showed minimal improvement, with results less than 10% and costing £2,000. The user did not find it effective compared to other treatments like Minoxidil or finasteride.
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 conversation is about finding locations in the USA for stem cell-enriched fat transfer to the scalp as a treatment for hair loss. The user is seeking suggestions for where to undergo this procedure.
The conversation discusses an experiment involving hair loss treatments, including the use of Verteporfin, KY19382, dutasteride, oral and topical minoxidil, AHK-Cu, and microneedling. The experiment aims to test the effectiveness of these treatments in promoting hair growth and healing without scarring, with updates planned every few months.
Hair multiplication or cloning is not available anywhere in the world. The conversation also mentions treatments like Minoxidil, finasteride, and RU58841 for hair loss.
CHK-Cu (copper peptide) and C-60 (branched carbon chain) are discussed as potentially more effective than minoxidil for hair regrowth. Some users are skeptical about the claim that DHT isn't the root cause of hair loss, and others are trying these products to see if they work.
Some actors are believed to use treatments like finasteride, minoxidil, or hair transplants to maintain their hair, while others are thought to have naturally good genetics. Opinions vary on whether celebrities like Brad Pitt have natural hair or use enhancements.
Finasteride may affect male offspring's fertility and hormonal balance, with debates on whether to discontinue use before conception. Some users report no issues, while others highlight the high doses used in rat studies.
Promising hair loss treatments in clinical trials include Pyrilutamide, GT20029, CB-03-01, and PP405, with potential market releases between 2027 and 2029. Hair cloning remains experimental and expensive, while existing treatments like finasteride, minoxidil, and microneedling continue to be used.
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.
Follistatin, known for inhibiting myostatin and promoting muscle growth in mice, is being discussed as a potential treatment for hair loss. Specific treatments mentioned include Minoxidil, Finasteride, and RU58841.
The user feels hopeless about hair loss despite using finasteride, dutasteride, minoxidil, and RU58841, and having a hair transplant. They are advised to maintain consistency in treatment, consider increasing dutasteride dosage, and explore topical solutions for better results.
The conversation is about a user interested in participating in hair cloning clinical trials due to their fine hair and previous positive experience with clinical trials. They are seeking information on how to volunteer for such trials.
Autologous exosome treatment for hair loss is being discussed as an emerging option. Minoxidil, finasteride, and RU58841 are also mentioned as treatments.
P-1075 is a more potent hair growth agent than Minoxidil, but it poses significant heart risks, making it unsafe for use. Despite promising results in macaques, concerns about its cardiotoxicity in rats have halted its development.
The conversation is about sourcing gray market compounds, gt20029 and pp405, for hair loss treatment. The user is interested in these compounds despite their unproven status and potential risks.
Pyrilutamide from Ligand Chem was used by several individuals to address hair loss, with mixed results and no significant side effects reported. Some users switched to Minoxidil Max for better value, while others noted no hair growth or only a reduction in shedding.
ABS-201 shows promise for male hair regrowth by blocking the prolactin receptor, with higher expected efficacy than current treatments. The discussion also covers dosing differences between macaques and humans for hmi115, highlighting a significant dosage disparity.
Users discuss finding reliable sources for RU58841, focusing on lab tests, batch consistency, and community reputation. Some mention using alternatives like pyrilutamide.
Hair follicle regenerative therapy is being developed, with clinical trials planned in Japan, potentially allowing for hair cloning and eliminating the need for treatments like finasteride. If successful, the treatment could be available in Japan by 2025, but widespread access and affordability may take longer.
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.
New hair loss treatments like PP-405, AMP-303, and SCUBE3 are being discussed, but none are confirmed to fully restore hairlines. Current treatments like Minoxidil, Finasteride, and RU58841 are still widely used, with some hope for future advancements in hair regrowth.