12 companies having drugs or therapies in clinical trials during 2023, with various molecules and phases of trial; the probability that some may fail; and progress being made in the field.
User discusses frustration with hair loss treatments and lack of progress. Emphasizes importance of measuring blood hormone levels to understand treatment effectiveness and side effects.
Stemson Therapeutics will start human trials for hair cloning in late 2025-2026. Product development is complete, and they are preparing for production and clinical trials.
The conversation discusses skepticism about the effectiveness of scalp tension theory and scalp massagers for hair regrowth, contrasting it with treatments like finasteride and minoxidil, which have more user-reported results. Participants question the belief in scalp tension theory, suggesting it may be a marketing tactic, while others argue for a multifactorial approach to hair loss.
Comparing the effectiveness of RU58841, Pyrilutamide and CB-03-01 as treatments for hair loss, with people discussing different aspects such as binding affinity, time of inhibition, safety data and cost.
The conversation discusses hair cloning progress and mentions treatments like Minoxidil, finasteride, and RU58841. Users also talk about hair transplants and their effectiveness.
Kintor's Pyrilutamide (KX-826) showed hair growth in Chinese Phase III trials but did not significantly outperform placebo. The treatment was safe with no major adverse reactions reported.
Exploring future hair loss treatments, including immunosuppressants for hair transplants and hair cloning, with a focus on leveraging research from other medical fields. Current treatments like finasteride and minoxidil are effective for most, but there's a call for more funding and innovation in the hair loss industry.
The conversation discusses the potential of new hair loss treatments, with a focus on pyrilutamide, gt20029, and topical alfatradiol, and the possibility of improving their effectiveness through methods like increased concentration and microneedling. Dutasteride is also mentioned as a stronger option.
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.
Dr. Bloxham's 9-month update on FUT scar revision with Verteporfin shows promising results. Excitement is high for FUE, which appears highly effective based on Dr. Barghouthi's findings.
PP405's phase 2a trial results were presented, focusing on safety and pharmacokinetics, with a future meeting planned to share the full dataset. The trial includes a randomized controlled portion and an open-label extension, with no indication of phase 2B completion.
Pyrilutimide and CB-03-01, two treatments for hair loss, have similar clinical trial results despite different binding affinities to androgen receptors. Factors other than binding affinity, like the time a drug stays bound to the receptor, may influence their effectiveness.
DHT causes hair loss by driving cells into senescence, and a polyphenol in black chokeberry may reverse this. A product using this theory is being considered for use alongside finasteride, minoxidil, and microneedling.
The conversation is about the anticipated release timeline for a hair loss treatment called GT20029. It may be available on the gray market in 1-2 years and officially in 3-4 years after completing clinical trials.
Feeding bacteria-free mice with Lactobacillus murinus worsened hair loss, but a regular diet with biotin stopped it. The conversation suggests gut bacteria and diet may influence hair loss, with some skepticism and discussion about other factors like DHT and genetics.
The conversation is about a user trying a new hair loss treatment, Ruxolitinib, alongside their existing regimen of finasteride, minoxidil, ketoconazole shampoo, and microneedling. They plan to apply Ruxolitinib to their temples daily for 1-2 months.
A user is advocating for Phase 3 trials of the hair loss treatment PP405 to be conducted in Germany, citing benefits like a diverse patient base and faster access for European patients. Despite skepticism about the petition's influence, the user believes it can demonstrate significant interest and potentially influence strategic decisions.
The post discusses speeding up verteporfin trials for hair loss treatment. The original poster, involved in the trials, requests help in crowdsourcing doctor emails to spread awareness and gather more support for the trials.
Longitudinal partial follicular unit transplantation involves extracting part of the donor follicular unit, allowing the donor area to be overharvested without noticeable hair loss. The conversation questions if this method is practiced in clinics or if it's theoretical, and whether it relates to hair cloning or multiplication.
GT20029 is a potential treatment for androgenetic alopecia, addressing the root cause by targeting androgen receptors, unlike Minoxidil or Finasteride. It is seen as a preventative measure rather than a regrowth agent, with hopes for market release soon.
Breezula's phase 3 results are expected soon, with discussions on the effectiveness of androgen receptor antagonists like spironolactone and the potential of GT20029. Users express skepticism about new treatments and discuss the complexities of male pattern baldness, often relying on finasteride despite its side effects.
The conversation discusses GT20029 as a potential hair loss treatment that could act like a cure by targeting androgen receptors in scalp hair follicles. Specific treatments mentioned include GT20029, with a user expressing hope that it could make male pattern baldness obsolete.
A user shared their positive experience with Roots by GA, a company that creates personalized hair loss treatments based on DNA analysis, which confirmed their inability to tolerate finasteride. The user is satisfied with their progress 30 days after a hair transplant and the customized formula they received.
A user plans to experiment with creating new hair follicles using methods like derma rolling, applying lithium chloride, tannic acid, and various other substances including caffeine, ketoconazole, and raspberry ketones. They also consider using anti-inflammatories, immunosuppressants, and DHT inhibitors to potentially improve results.
Baldness is difficult to cure because current treatments like finasteride, dutasteride, and minoxidil only prevent hair shedding, and new developments are mostly ineffective. Botox shows potential in aiding skin regeneration and hair growth, but maintenance therapy with treatments like dutasteride and minoxidil may still be necessary.
Hair transplant recipients are concerned about whether dormant follicles are permanently damaged by incisions, but some believe undamaged follicles could still regrow if a treatment like PP405 is effective. Opinions vary on the impact of transplants on original follicles, with some suggesting treatments like finasteride can help regrow hair.
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.