TWIST-1 gene's role in hair loss and potential as a treatment target. Inhibiting TWIST-1 may prolong hair growth and reduce hair follicle sensitivity to DHT.
Beta-sitosterol may inhibit 5-alpha reductase type 2 enzyme, potentially reducing DHT levels and promoting hair growth, similar to finasteride but possibly with fewer side effects. Its effectiveness and side effects compared to other treatments like saw palmetto and finasteride remain uncertain due to limited research.
The conversation is about hair loss treatments, specifically the anticipation for the release of a new treatment, GT20029, by 2028. Users are discussing their experiences with current treatments like finasteride and dutasteride, and the potential of future treatments, including FAK inhibitors and verteporfin trials.
MCL-1 protein may help maintain hair follicles in the growth phase and prevent miniaturization. There is interest in experimental treatments like exosomes, peptides, or stem cell serums to upregulate MCL-1 for hair loss, especially for those not using minoxidil or finasteride.
Probiotics like L. reuteri ATCC PTA 6475 and B. longum BB536 may improve hair growth and density by reducing inflammation and reversing DHT damage. The user is trialing these probiotics personally, ordering them from the U.S. to Canada, and plans to continue if no adverse effects occur.
The conversation discusses managing gynecomastia symptoms potentially caused by finasteride use, with treatments including reducing finasteride dosage, using DIM, ashwagandha, tamoxifen, epistane, and arimistane. Users share experiences and advice on balancing testosterone and estrogen levels to address symptoms.
GLA may help with hair loss due to its anti-inflammatory properties and 5ar enzyme inhibition. It's considered potentially more important than biotin, especially for those already using finasteride and dutasteride.
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 discusses using T3 (triiodothyronine) as a topical treatment for hair growth, with some users noting it showed promising results in studies but lacked follow-up. Users express interest in trying T3 due to its potential effectiveness compared to Minoxidil.
The conversation is about a user preparing to join the ABS-201 clinical trial for hair loss treatment, which involves a prolactin inhibitor. The user plans to update others on their progress if enrolled.
GT20029 and CosmeRNA are both potential hair loss treatments; GT20029 breaks down the androgen receptor, while CosmeRNA prevents its production. Continuous use is needed, but less frequently than current treatments like Minoxidil and Finasteride.
The conversation discusses using TH16, a topical melatonin with resveratrol, and stemoxydine for hair maintenance, avoiding finasteride and minoxidil due to side effects. The user is considering a low-dose topical finasteride despite sensitivity.
The user's consideration of taking finasteride as a short-term treatment, while awaiting advances in medical technology such as Pyrilutamide and GT20029; other users' experiences with Finasteride, including potential side effects.
The conversation humorously discusses hair loss treatments, mentioning Minoxidil, finasteride, and RU58841. It jokingly credits a person for the potential success of a treatment called GT20029.
Hair loss discussion involves experimenting with Sulforaphane from broccoli sprouts and possibly procyanidin b2. People seek updates on progress and if it's worth adding to treatment stack like microneedling.
The conversation discusses hair loss treatments, specifically using Minoxidil, finasteride, and RU58841. It also mentions the importance of raising vitamin D3 levels.
A gel of keratin microspheres promotes hair follicle growth, showing similar effectiveness to minoxidil in mice. The treatment activates hair growth pathways and reduces inflammation, with potential applications in drug delivery for hair-related disorders.
The user experienced no improvement in hair loss with finasteride and minoxidil but had side effects. They plan to add wounding, scalp massage, vitamin K, and taurine supplements to their regimen and seek feedback on these additions.
Gut microbiota significantly influences androgen metabolism, impacting hair loss treatments like finasteride. Probiotics, dietary changes, and fecal microbiota transplants may help manage DHT levels and improve hair health.
A new hair loss treatment involving Keratin Microsphere Gel is discussed, with skepticism and jokes about its effectiveness and comparisons to other treatments. Users are doubtful and make light of the situation, referencing past disappointments and the study's focus on mice.
The conversation discusses updates on hair loss treatments, specifically GT20029, PP405, and a rumored injectable peptide from UT. GT20029 is seen as a promising treatment expected within 5-7 years.
The conversation discusses the anticipation and skepticism around the release of GT20029 for hair loss treatment. The original poster has been using Finasteride and Minoxidil but is hopeful for GT20029, while others express doubts about its timely release and suggest alternatives like KX826 and hair transplants.
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.
New hair loss treatments like GT20029 and PP405 could potentially replace minoxidil and finasteride, offering better results with fewer side effects. However, current treatments like finasteride and minoxidil are still effective for many, despite concerns about side effects.
Increasing IGF-1 may help hair growth, but it could also increase hair loss in people with high testosterone. Treatments discussed include l-arginine, glutamine, vanadium, Deer Antler Velvet, ATP, Cocarboxylase, l-carnitine, and Mk677.