Hair loss discussion includes treatments Minoxidil, Finasteride, and RU58841. Prolactin's role in immune system's antitumor activity raises safety concerns for HMI-115.
A compound called MTP3 from the Monoterpene family was found to be safe and highly effective at treating hair loss by inhibiting the FGF5 gene, but its identity is undisclosed for commercial reasons. No specific treatments like Minoxidil, finasteride, or RU58841 were discussed.
A peptide from Japanese water chestnut fruit may help with hair loss by suppressing DHT's effect on hair follicle cell death, potentially serving as a finasteride alternative. The treatment's effectiveness and safety in humans remain uncertain.
Fluridil degrades androgen receptors, which are prevalent in the scalp and other tissues. People with androgenetic alopecia (AGA) may have higher expression of these receptors and 5AR activity in affected scalp areas.
A sugar gel containing 2-deoxy-D-ribose has shown promising hair regrowth results in mice, comparable to Minoxidil. Users are discussing the potential to buy and try this compound themselves.
2-Deoxy-D-Ribose is discussed as a potential hair loss treatment, but skepticism exists due to lack of human testing. The original poster uses a combination of topical Minoxidil, oral Finasteride, topical RU58841, and other treatments, reporting some hair regrowth but not significant results.
Glycosaminoglycans are important for hair growth, and combining minoxidil with tretinoin and Biopeptide-CL may enhance hair growth by boosting glycosaminoglycan levels and improving the hair follicle environment. Users discussed the potential effectiveness and future of these treatments.
A naturally occurring sugar, 2-deoxy-D-ribose, in a hydrogel form, shows promise for hair regrowth similar to minoxidil in rats. The user plans to synthesize it for topical application, seeking input from others.
DLQ01, a prostaglandin F2α analog, shows promise for hair growth by directly stimulating PGE2/PGF receptors without needing conversion, and can be combined with minoxidil and retinoids like tretinoin for enhanced effectiveness. Minoxidil's efficacy may be reduced by COX-1 inhibitors, but using prostaglandin analogs like Latanoprost or Bimatoprost can help maintain its effectiveness.
A new therapy aimed at destroying DHT receptors in the scalp is still in early trials and may take at least 5 years to become available. A sugar-like solution similar to Minoxidil is also in early testing stages and not yet commercialized.
Minoxidil sulfate is considered for those unresponsive to regular minoxidil, with some trying a 10% formulation from Folligenz. Concerns exist about the product's stability and transparency, but some users report positive initial results.
The user experienced improved hair density after switching from 5mg to 2.5mg oral Minoxidil post-esophagus surgery, suggesting a possible link between gut health and hair growth. They theorize that long-term medication may have blocked nutrient intake, affecting hair regrowth.
High sugar diets may worsen hair loss by increasing 5α-reductase activity and androgen levels, especially in women with PCOS. A low sugar diet might reduce scalp DHT levels, similar to finasteride, but genetics also significantly influence hair loss.
Hope Medicine received a $28M investment for HMI-115, a monoclonal antibody in phase II trials for treating androgenetic alopecia. Some users are skeptical about its effectiveness, while others find the investment and trial results encouraging.
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.
Male pattern baldness (MPB) may be influenced by androgen receptors in scalp hair follicles and potentially poor blood flow. Transplanted hair is not immune to DHT, and factors like inflammation and scalp tension might also contribute to hair loss.
SCUBE3, a protein linked to hair growth in moles, was discovered over 25 years ago and is being developed by Amplifica for potential hair loss treatment. Concerns exist about SCUBE3's association with cancer, as it is a protein that promotes cell growth, which could potentially trigger cancer development if used for hair growth therapy.
Concerns about CosmeRNA safety mechanisms and potential side effects. Discussion includes comparisons to Fluridil and questions about nanoparticle specificity and siRNA stability.
The user does not respond well to minoxidil and is seeking an alternative to Tretinoin to upregulate sulfurtransferase activity for hair loss treatment. No specific alternative treatments were mentioned.
Minoxidil and finasteride are being considered for hair loss due to seborrheic dermatitis and male pattern baldness. The user is also using ketoconazole and zinc pyrithione shampoo.
Glycine supplementation may increase 5-alpha reductase activity, potentially affecting hair loss. Users discuss its impact on hair fall and its role in the body.
Microneedling combined with latanoprost may convert vellus hairs to transitional or terminal hairs. The user suggests using oral minoxidil to increase vellus hair, then applying a high concentration of latanoprost with microneedling for conversion.
The conversation discusses using 23andme to determine if someone might respond well to minoxidil for hair loss treatment, and mentions the user's personal experience with micro-needling and minoxidil.
A user discovered CosmeRNA, a new hair loss treatment with clinical research backing, set to release soon. The conversation revolves around its potential effectiveness, cost, and how it compares to existing treatments like Minoxidil and Finasteride, with some users expressing hope for a side-effect-free option.
The conversation discusses managing seborrheic dermatitis (sebderm) and male pattern baldness (MPB) with treatments like finasteride, coal tar shampoo, Nizoral, and oral minoxidil. Users suggest dietary changes, regular shampooing, and using antifungal products to control sebderm before considering minoxidil.
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.
Methylsulfonylmethane (MSM) is not a treatment for male pattern baldness but can accelerate hair growth and thicken miniaturized hairs, with the side effect of increased hair growth all over the body. The user asks others to share their experiences with MSM.
HMI 115 is being discussed as a potential hair loss treatment, with skepticism due to past disappointments like cosmeRNA, brezula, and pyrilutamide. The user is questioning if they should be hopeful for new developments in the next six years.