PP405, a topical LDH inhibitor, has shown to stimulate hair follicle stem cell proliferation in humans with moderate hair loss. They are advancing to more detailed trials this year.
A recent publication suggests that the flavonoids eriocitrin and silymarin may be more effective than finasteride in binding to the enzyme responsible for hair loss. People in the conversation are skeptical about the effectiveness and safety of these flavonoids until tested on humans, and some discuss their personal experiences with other treatments.
Oral PTD-DBM was discussed as a potential hair loss treatment, but it was deemed ineffective in humans despite promising results in mice. The conversation concluded that trying it without VPA might be unwise.
FCE 28260 (PNU 156765), an under-explored 5α-reductase inhibitor, showcases promising results in research by Giudici et al., outperforming well-known treatments like Finasteride in reducing the conversion of testosterone to DHT. Its superior efficacy, demonstrated through lower IC50 values in both natural and human recombinant enzyme studies, suggests it could offer more effective management of DHT-related conditions. Additionally, its lower molecular weight hints at better potential for topical application, potentially offering advantages in treating conditions such as androgenic alopecia. Despite its potential, it has not advanced in development, possibly due to financial limitations, leaving its therapeutic prospects and side effect profile largely unexplored.
A user is considering adding PRP and mesotherapy to their hair loss treatment and is deciding between two options: Promoitalia, which contains Phosphatidic acid, Riboflavin, and Superoxide dismutase, and the more expensive Melsmon, a human placenta derivative. They seek advice on which option to choose based on effectiveness and scientific backing.
The conversation discusses using peptides BPC-157 and TB-500, combined with microneedling, to potentially enhance hair regrowth. The user plans to try BPC-157 due to its lower cost and reports of hair growth, despite limited human trials and concerns about side effects from other treatments like minoxidil and finasteride.
After a hair transplant, it's advised to stop using RU58841 and minoxidil to avoid irritation, resuming them 25-30 days post-surgery if the scalp is healed. The user is currently using finasteride, minoxidil, and RU58841, but there are concerns about the safety and efficacy of RU58841 in humans.
A breakthrough in hair follicle cultivation using induced pluripotent stemcells (iPSCs) has been achieved, producing large hair follicles suitable for transplantation. Clinical trials for this hair multiplication technology are planned in partnership with Yinguan Biotechnology.
Adipose-derived stemcells with ATP improved hair regrowth in male and female mice with androgenetic alopecia. The most effective treatments were low dose stemcells with ATP for males and medium dose stemcells with non-liposomal ATP for females.
Stem cell hair transplants use stemcells from fat tissue to reactivate inactive hair follicles, but results are inconsistent and not widely shared. Traditional treatments like finasteride and minoxidil often show better results.
Stem cell treatments for hair restoration can be effective, but results vary and depend on factors like the type of stemcells used and timing of treatment. PRP and exosomes have shown some success, while costs and effectiveness differ by location, with South Korea and Turkey offering more affordable options.
The conversation discusses hair loss treatments, specifically Regenera stemcells and exosomes from 'Cellgenic' umbilical cord donors. The user has been using topical minoxidil 5% and 0.001% estradiol for a year without seeing effects, and another user mentions the importance of microneedling.
Hair loss treatments like finasteride, minoxidil, and hair transplants have side effects and limitations. There is hope for future advancements in stem cell therapy and hair follicle regeneration, though skepticism about their effectiveness and timeline persists.
Stem cell therapy shows promise in treating hair loss by mimicking DHT-resistant cells from the back of the head. Traditional treatments like finasteride are also discussed, but stemcells could potentially offer a more permanent solution.
The conversation discusses unconventional and satirical ideas for hair regrowth, including using umbilical cord cells, stemcells, and other humorous suggestions. It concludes with recommendations for more traditional methods like hair transplants or hair systems.
A user proposed genetically engineering scalp stemcells 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.
PP405 shows promise in hair loss treatment, but stem cell therapy using adipose-derived stemcells and ATP also successfully reversed androgenetic alopecia in mice. Stem cell therapy is costly, and some doubt the effectiveness of PP405 based on press releases.
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.