The conversation discusses using hair follicle dermal papilla exosomes for hair loss treatment. It inquires about purchasing options for this treatment.
Hair loss may be linked to the TRPS1 gene and protein, not just DHT. Amplifica's AMP-303 targets mesenchymal stem cells and shows promise in treating hair loss, unlike Pelage's PP405.
The user is experiencing hair shedding despite using finasteride, minoxidil, and microneedling, and is concerned about the non-linear progress. Other users share similar experiences, suggesting shedding is normal and cyclical, with some recommending less frequent microneedling.
A new stem cell method for culturing hair follicles is being developed as an alternative to Minoxidil, finasteride, and RU58841. There are concerns about its cost and accessibility despite plans for commercialization.
The conversation discusses hair regrowth using dissolvable microneedles loaded with rapamycin and epigallocatechin gallate nanoparticles. Specific treatments mentioned include Minoxidil, finasteride, and RU58841.
Twist-1 is being explored as a promising early-stage hair loss treatment, while Scube-3's effect on Twist-1 in breast cancer cells raises concerns about its use for hair loss. The conversation discusses the potential differences in protein effects across various cell types.
The user is addressing hair loss with finasteride, dutasteride, oral and topical minoxidil, dermarolling, and shampoos. They are considering adding essential oils to improve circulation.
Exosome treatment for hair loss, derived from umbilical cord stem cells, is being considered as an option before a hair transplant. Users discuss the need for ongoing maintenance and share experiences with different exosome sources, including plant-derived options.
The conversation discusses a comprehensive hair regrowth regimen including Dutasteride, Finasteride, microneedling, RU58841, oral and topical Minoxidil, Tretinoin, and Vitamin D3. Suggestions include dropping Finasteride, increasing Dutasteride, and considering additional treatments like caffeine, melatonin, and laser therapy, while emphasizing the effectiveness of Dutasteride and Minoxidil.
The conversation is about a hair loss product that claims to use stem cells and ingredients like Capixyl, Redensyl, and Baicapil, with the user asking if anyone has looked into it. No specific treatments were discussed.
Amplifica is developing new molecules for hair growth, with clinical trials expected soon, while Engraft Technologies is improving FUE robotic technology to make hair transplants faster and cheaper. Users express interest in the timeline for AMP-303 and concerns about high costs and effectiveness of current treatments.
Stem-cell hair transplants could potentially create thousands of grafts from a single donor graft, offering a solution for hair loss with DHT-resistant hair. Companies like Stemson Therapeutics and OrganTech are working on this technology, which may become available in the future, possibly reducing the cost and making it widely accessible.
The conversation discusses the legitimacy of hair stem cell transplants, with skepticism about their effectiveness and claims of infinite grafts. Some users mention alternative treatments like verteporfin and share experiences with different clinics and doctors.
The conversation is about hair regrowth progress using a combination of treatments: dutasteride, minoxidil, RU58841, ketoconazole, and monthly microneedling. The user reports that microneedling and topical minoxidil had the most impact on their hairline.
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.
Hair loss may be linked to blood flow and inflammation, with treatments like Minoxidil, finasteride, and quercetin being discussed. The conversation also mentions the role of 5AR enzyme distribution in hair follicles.
Pelage is developing a topical hair follicle stem cell therapy, PP405, for non-scarring alopecias like androgenetic alopecia, with Phase III trials planned and a potential market launch by 2027. The treatment may not require continuous use after initial regrowth.
The conversation discusses the possibility of creating liposomal topical finasteride at home or at a local pharmacy, questioning if it is an expensive or proprietary technology. It also mentions making topical finasteride using alcohol and propylene glycol.
GT20026 is discussed as a potential treatment for hair loss that targets androgen receptors without affecting hormone levels, but it may not promote significant regrowth. It is expected to be available by 2028, with other treatments like Breezula and Clascoterone also mentioned.
The conversation is about two new videos on exosomes, focusing on how they work and a Q&A session about their use. Specific treatments for hair loss are not discussed.
A stem cell and adenosine triphosphate cocktail showed promising results in hair regrowth for male and female mice, with potential for future clinical trials. Users humorously reacted to the success in mice, expressing hope for human application.
Dermatologists use treatments like oral minoxidil, finasteride, and RU58841 for male-pattern baldness, considering side effects and patient preferences. Photobiomodulation is noted as mildly effective but costly, while PRP is debated for its effectiveness compared to microneedling.
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.
A user is considering an extensive hair loss treatment regimen including oral dutasteride, oral minoxidil, topical finasteride, tretinoin, microneedling, keto shampoo, laser comb, and PRP injections. Suggestions include simplifying the routine, possibly increasing minoxidil dosage, and considering alternatives like RU58841, while cautioning against using estrogen due to potential side effects.
A potential breakthrough in hair loss treatment involves softening hair follicle stem cells, but its effectiveness in humans is uncertain. Users express skepticism, noting past successes in mice that haven't translated to human treatments.
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.
SCUBE3 and GT20029 are potential treatments for hair loss, with SCUBE3 stimulating hair growth and GT20029 protecting against DHT. A combined approach using SCUBE3, finasteride or dutasteride, and later GT20029 could provide a comprehensive treatment for androgenetic alopecia.
The conversation humorously discusses using off-label drugs like Minoxidil, finasteride, and RU58841 for hair growth. It jokes about the brain absorbing these treatments for maximum keratin production.
New hair loss treatments like stem cells, hair cloning, and gt20029 are unlikely to be available in the next 5-10 years, with some trials possibly starting by 2026. Current treatments like Minoxidil and Finasteride have been used for decades, and new developments depend on funding and successful trials.