The conversation discusses hair regrowth possibilities using finasteride, minoxidil, microneedling, and dutasteride, with the user experiencing improvement from NW4 to NW2. Achieving NW0 is deemed unrealistic, but further regrowth may be possible with patience and potentially a hair transplant.
The conversation discusses hair loss linked to BDNF-increasing nootropics like Semax and Lions Mane. Suggested topical treatments include capsaicin, beta-glucan, and ginseng to counteract TGF-B activation.
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.
Hair regrowth on wounded and bald skin may be possible by activating the sonic hedgehog gene, leading to hair regrowth in mice. The findings are promising but may not directly apply to humans.
Dr. Muñoz's discovery suggests that targeting potassium channels in fibroblasts could reactivate hair growth, offering new treatment possibilities for alopecia. Potential strategies include using minoxidil, diazoxide, and other potassium channel openers, as well as bioelectric devices and direct growth factor applications.
He Shou Wu (Fo Ti) extract was found to prolong the hair growth phase, inhibit 5-alpha-reductase (like finasteride), reduce androgen receptors, and increase growth factors, potentially outperforming minoxidil in recovering hair follicle size after DHT exposure. Two compounds, emodin and TSG, are identified as responsible for these effects and warrant further investigation.
DHT may inhibit hair growth by affecting mitochondrial function, leading to hair follicle miniaturization. Treatments like minoxidil and PP405 may promote hair growth by altering metabolic pathways, potentially counteracting DHT's effects.
Verteporfin, used with dermal incisions by doctors like Dr. Melissa Toyos, is suggested as a promising treatment for high Norwood hair loss, with some users reporting significant regrowth. However, there is skepticism about its effectiveness due to concurrent use of other treatments like dutasteride and oral minoxidil.
Carnosic acid in rosemary extract may enhance skin repair and promote hair follicle regeneration. It could be used alone or with verteporfin for scarless healing after dermal wounding.
A user applied the 8T3 product for hair loss, targeting LPP and AGA, and plans to update on its effectiveness. The product uses a saline buffered phosphate vehicle, suitable for those intolerant to ethanolic vehicles.
PP405 may encourage earlier hair growth and slightly increase visible hair count but does not reverse hair follicle miniaturization in male pattern baldness. It does not address damage to the dermal papilla or broken Wnt signaling.
MCL-1 is important for hair follicle stem cell survival, but its impact on human hair regrowth is unclear. Minoxidil and finasteride are the main treatments, with doubts about new discoveries leading to effective human solutions soon.
A user is considering an extensive hair loss treatment regimen including oral dutasteride, oral minoxidil, topical finasteride, tretinoin, microneedling, keto shampoo, laser comb, and PRP injections. Suggestions include simplifying the routine, possibly increasing minoxidil dosage, and considering alternatives like RU58841, while cautioning against using estrogen due to potential side effects.
The conversation discusses using a multimodal approach to treat androgenic alopecia, including substances like gamma-linolenic acid, DHA, sulforaphane, melatonin, cetirizine, astaxanthin, fisetin, apigenin, curcumin, limonene, genistein, and berberine. Users also mention using ketoconazole, minoxidil, and low-level laser therapy (LLLT) as part of their hair loss treatment regimens.
Hair loss may be linked to the TRPS1 gene and protein, not just DHT. Amplifica's AMP-303 targets mesenchymal stem cells and shows promise in treating hair loss, unlike Pelage's PP405.
Hair loss may be linked to the GPR133 receptor, independent of the androgen receptor pathway. Treatments like finasteride, dutasteride, minoxidil, RU58841, and KX-826 show varying results, with hair loss persisting due to high testosterone and GPR133's role.
Exploring a potential hair loss treatment using the enzyme AKR1C2 to locally reduce DHT levels. Challenges include enzyme delivery through the skin and high production costs, with gene therapy or stem cells suggested as future alternatives.
Hair follicle regeneration through stem cell rearrangement is discussed, focusing on bioengineered cellular structures rather than traditional hair transplants. Treatments mentioned include Minoxidil, finasteride, and RU58841.
A user shared their experience using capsaicin from chili peppers and occasional topical minoxidil to promote hair growth, noting noticeable improvements without significant side effects. They previously experienced side effects from dutasteride and minoxidil but found the new regimen effective and manageable.
A new hair loss protocol using FDA-approved topical treatments targets eight pathways, potentially improving results by 60-75% compared to the standard 40-50% from oral minoxidil and finasteride. The protocol includes minoxidil, finasteride, tacrolimus, cetirizine, bimatoprost, lithium gluconate, losartan, melatonin, NAC, caffeine, and tretinoin, with a monthly cost of $35-50 in Mexico and $80-150 in the US.
The user has been using a hair loss treatment protocol including topical dutasteride, minoxidil with tretinoin, ketoconazole shampoo, microneedling, a laser cap, and vitamin D for 15 weeks, showing impressive progress. Feedback suggests continuing medical therapy for 12-24 months before considering a hair transplant.
Various hair growth treatments were discussed, including microneedling, bimatoprost, setipiprant, stemoxydine, PGE2, CB-03-01, WNT Beta-Catenin upregulators, KY19382, topical estrogen, IGF-1, GH, MK-677, oral castor oil, fisetin, resveratrol, cetrizine, and lactic acid. Users shared experiences and sources for these treatments, with some expressing interest in topical solutions and others noting the lack of FDA approval or scientific evidence for certain options.
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-related treatments and drugs like RCGD423 and WAY are being tested for hair growth. Clinics are conducting tests on patients who haven't had previous treatments.
The user experienced hair thinning, possibly due to long COVID and prediabetes, and saw regrowth after dietary changes and using biotin shampoo. They are taking vitamins and noticed significant hair regrowth, especially at the widow's peak.
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.
PP405 shows promise for hair regrowth by manipulating stem cell characteristics and lactate dehydrogenase, with Phase 2a trials pending. Google Ventures' $15M investment suggests confidence, but results and market availability remain uncertain.
The user is addressing hair loss with finasteride, dutasteride, oral and topical minoxidil, dermarolling, and shampoos. They are considering adding essential oils to improve circulation.
The conversation discusses hair regrowth progress using topical dutasteride with cetirizine, laser therapy, and growth serum. The user observes miniaturized, vellus hairs on the scalp.