CB-03-01 is considered a failed treatment for hair loss, with future hopes pinned on PP-405 and GT-20029, expected by 2030. Alternatives like hair transplants and SMP are discussed, while some users express frustration over the slow progress of treatments like Breezula.
The post discusses the potential of GT20029 in treating hair loss, questioning if it will replace finasteride or be used alongside existing treatments. A reply indicates that its role is still uncertain.
The conversation discusses the use of Verteporfin in hair loss treatment. It suggests that Verteporfin could potentially regenerate hair follicles instead of forming scars, providing an unlimited donor supply for hair transplants.
The conversation is about a user experiencing hair thinning and considering exosome treatment after being advised against a hair transplant. The user seeks advice from others who may have tried exosomes for hair loss.
A 26-year-old male considering a hair transplant is using topical finasteride and minoxidil, planning to start feminizing hormone replacement therapy (HRT) with estrogen and spironolactone. Many suggest waiting to see the effects of HRT, which may significantly regrow hair, before deciding on a transplant, and recommend adding microneedling and possibly switching to oral treatments for better results.
Verteporfin is being explored for its potential to improve hair transplant outcomes by reducing scarring and increasing donor hair follicles. There is skepticism about the results, with some claiming misleading presentation of evidence.
The conversation discusses the use of autologous exosomes for hair loss, questioning their effectiveness and seeking real user experiences. The user is skeptical about the treatment's legitimacy and is looking for honest feedback on its results.
A user's two month update on their hair loss journey and the treatments they are trying, which include exosome injections, minoxidil, finasteride, and RU58841.
A user shared their successful 1-year update after a 2300 FUE hair transplant in Seoul, Korea, praising Dr. Ko's work for achieving a natural-looking hairline. The conversation includes admiration for the results and inquiries about the procedure's cost and requirements.
GT20029 showed promising results for hair growth in a Phase II trial, with the 1.0% twice-weekly regimen being the most effective. Some users expressed skepticism and humor about the product's effects and market availability.
The conversation is about finding reputable clinics in Belgium, the Netherlands, France, or Germany for PRP with double centrifugation or exosome therapy for hair loss. The user seeks recommendations based on personal experiences or good reviews.
Exosome injections stimulate hair growth by using exosomes' healing potential to awaken dormant hair follicles and promote new hair cell creation. The procedure increases scalp blood circulation, encourages collagen and elastin formation, and regenerates hair follicles, improving hair thickness and quality.
The conversation is optimistic about future hair loss treatments, highlighting Veradermics, Breezula, and PP405 as promising options expected by 2027-2028. The user expresses hope that these developments will prevent future generations from experiencing the same struggles with hair loss.
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.
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.
The conversation is about whether stemoxydine can shorten the dormant phase after a hair transplant, known as the ugly duckling phase. There is skepticism about whether it actually works as claimed.
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.
CRISPR treatments for blood disorders have been approved, leading to discussions about its potential for treating hair loss (AGA). A study showed that editing a gene related to DHT sensitivity could lead to hair regrowth, suggesting CRISPR may eventually be used for AGA, but it's expected to be expensive and not soon available.
User discusses verteporfin for hair regrowth through "super microneedling" and preventing scarring. They mention a case of an old man regrowing hair after a head injury and suggest verteporfin could recreate this result.
A user developed AI software to simulate hair transplants on photos, helping people visualize potential results. The tool offers photo-realistic renderings but advises caution regarding exact outcomes due to various factors.
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.
The conversation discusses anticipation for CB-03-01, a potential new hair loss treatment that may be more effective and have a cleaner safety profile than finasteride. Users are hopeful but cautious, discussing current treatments like minoxidil, nizoral, and dermarolling, and the possibility of combining them with CB-03-01 for better results.
Kintor Pharma completed patient enrollment for a Phase II trial in China for GT20029, a potential new treatment for hair loss. Some believe GT20029 could replace finasteride if effective, while others discuss finasteride's limited efficacy and potential underreported side effects.
Shiseido's S-DSC hair regenerative treatment in Japan focuses on improving existing hair by thickening miniaturized follicles, not creating new ones. There is limited patient feedback and long-term data available.
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.
Exosomes were used for hair loss treatment, showing results 33 days after the second session. The conversation also mentions Minoxidil, finasteride, and RU58841 as treatments.
Follicum discovered that their drug FOL-005 increased hair count by 12 hairs per cm2 in patients with less than 255 hairs per cm2 and is planning a phase 2b trial. They are currently fundraising for the trial, and the drug may also be effective for women.