A German startup, Mane Biotech, developed a head wearable device to reactivate hair follicle stem cells, sparking skepticism among users. Some users suspect it might be a scam, while others are interested in more information from the company's newsletter.
Hair loss treatments like Minoxidil, finasteride, and stem cell therapies exist, but a complete cure is hindered by genetic complexity and market dynamics. Cloning hair follicles is considered a potential solution, but it's currently not feasible.
Hair loss is largely influenced by genetics, with treatments like finasteride, minoxidil, and RU58841 being used to manage it. Despite healthy lifestyles, hair loss can still occur, highlighting the complex relationship between genetics, health, and aging.
PP405 is a promising molecule that may reactivate dormant hair follicles, potentially offering a new treatment for hair loss. It is in phase 2 trials, with possible availability between 2027 and 2030.
miR-205, a tiny RNA, can stimulate hair growth by softening aging hair follicle stem cells in mice. Future tests aim to see if this can work in humans.
Lab-grown hair using iPSCs is being explored, but practical applications are limited. Finasteride is suggested as the only current effective treatment.
The conversation discusses the mechanism of action of alfatradiol (17 alpha estradiol) in treating hair loss. It explores theories that it either inhibits 5 alpha reductase to prevent T->DHT conversion or aromatizes scalp T into 17-alpha-estradiol to save hair.
The user is unsatisfied with their hair transplant and is considering another transplant, PRP, exosomes, or stem cells. They currently use topical minoxidil, dutasteride, and tretinoin.
Hair cloning and new treatments like ET-02, Veradermics (vdphl01), and wound-induced hair neogenesis show promise but are not yet widely available. Current effective treatments include minoxidil, finasteride, and dutasteride, with early intervention being crucial for better outcomes.
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.
A 24-year-old shares a 1-month update on his hair regrowth journey using 1mg oral finasteride, 10mg oral minoxidil, dermarolling, and pyrilutamide. Replies suggest it may take a few hair cycles for vellus hairs to mature into normal hairs, with progress varying by individual.
Pelage Pharmaceuticals' PP405 aims to treat hair loss by reactivating dormant hair follicle stem cells, showing promising results in early trials. The company plans to present their findings at the American Academy of Dermatology Annual Meeting in 2026.
The discussion is about using ASCEplus HRLB exosomes for hair loss treatment, which combines 10 billion exosomes with growth factors, nutrients, biotin, and copper tripeptide. The treatment is expensive and typically administered via scalp injections, but in Europe, it's done with microneedling.
Capilia Longa and Scandinavian Biolabs are discussed, with skepticism about their effectiveness and value. The conversation suggests avoiding these products due to high cost and perceived lack of results.
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.
Male-pattern baldness might increase UVB exposure on the scalp, potentially affecting vitamin D and skeletal health. The hypothesis is debated, with some seeing it as a minor benefit in specific contexts.
The conversation discusses potential future hair loss treatments, including SCUBE3, hair follicle cloning, and GT20029, with mentions of past disappointments like CosmeRNA and hopes for treatments like Verteporfin for infinite donor hair.
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.
PP405 and JXL-069 are the same compound, but users experienced no results due to flawed application methods. The topical gel formulation of PP405 is designed to target hair follicle stem cells effectively, unlike liquid solutions that fail to penetrate deeply.
OP is considering using Stemoxydine or the Ordinary Multi Peptide Hair Serum as a carrier for topical finasteride, avoiding minoxidil due to palpitations. They plan to crush finasteride pills into a 30 ml solution.
Stem cell hair transplants use stem cells 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.
High frequency ultrasonography and HR-MRI can help identify hair shedding causes like inflammation and fibrosis. The conversation discusses the potential of using these technologies to evaluate treatments like Verteporfin for hair regeneration.
Low-Level Laser Therapy (LLLT) is seen as a safe and effective method for maintaining hair and promoting regrowth in androgenetic alopecia (AGA) and male pattern baldness (MPB), with devices like the HairMax LaserComb® and iRestore helmet being popular. Some users and professionals are skeptical about its long-term effectiveness and cost.
Adipose-derived stem cell secretome showed significant improvement in hair density and growth, especially when combined with minoxidil, suggesting a synergistic effect. The study had limitations, including a small sample size and potential bias.
The conversation is about using micro needling and PTD-DBM for hair loss treatment. The user applies PTD-DBM drops on weekdays and performs micro needling weekly.
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.
The conversation discusses hair regrowth progress using Minoxidil, finasteride, and RU58841. It highlights the transformation of vellus hairs into terminal hairs in a Norwood 6 frontal area.
Stem cell and exosome injections for hair loss are discussed, with skepticism about their effectiveness and concerns about using non-genetically related stem cells. Dr. Deyarmin's treatments are mentioned, with some users questioning their legitimacy and others expressing curiosity.
Pelage is delaying the start of phase 3 trials for PP405 to 2026 due to necessary regulatory processes, despite having $120 million in funding. Users discuss the potential of PP405 for hair regrowth, with some expressing skepticism and others hopeful for new treatments like Breezula.