Hair loss is linked to cellular physiology and the IGF-1 to TGF-B1 ratio, not just androgen sensitivity. The theory lacks evidence, while finasteride and minoxidil are effective treatments.
Stemson Therapeutics has shut down, disappointing those seeking a hair loss cure. Current treatments like minoxidil, finasteride, and dutasteride are discussed, with some users experiencing side effects and exploring alternatives like PP405.
PP405 shows promise in activating dormant hair follicles and increasing hair counts but lacks detailed efficacy data compared to minoxidil and finasteride. Opinions are mixed, with some optimism and skepticism about its effectiveness.
Hair loss treatments include using finasteride, dutasteride, and RU58841. Lifestyle changes like increasing carb intake and moderate alcohol consumption are suggested to boost estrogen levels.
Amplifica's AMP-303 showed a modest increase in hair growth, but results were inconsistent and potentially misleading. Hyaluronic acid and osteopontin are being explored for hair growth, with varying effects on different hair types and conditions.
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.
Prolactin may contribute to hair loss, but targeting its receptor won't cure androgenetic alopecia. ABS-201 could be a useful alternative or adjuvant therapy, similar to JAK inhibitors, but not more effective than HMI-115.
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.
Hair follicles cannot be desensitized to DHT like allergies; treatments focus on reducing DHT levels or blocking its effects using methods like finasteride, GT20029, or PROTACs. Topical treatments like ceterizine and BPA application are also mentioned.
Topical Finasteride doesn't directly reduce 5ar enzyme on scalp and has the same mechanism as oral, needing to go through the liver. Users debate the accuracy of this information and discuss various studies and experiences.
An 18-year-old with early hair loss is advised to consider minoxidil and finasteride, with a doctor's consultation recommended. Alternatives like a hair system or shaving are suggested due to potential medication side effects and lifelong commitment.
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.
Dutasteride users have mixed results in hair loss treatment, with some experiencing improvements and others worsening. Some report metabolic changes like weight gain or diabetes, while others have no significant side effects.
The user is frustrated with hair loss treatments like finasteride, minoxidil, dutasteride, and oral minoxidil, which have been ineffective and caused scalp itching. They are skeptical about these treatments' effectiveness and consider alternative options like ketoconazole shampoo and RU58841.
DHT affects hair follicles, contributing to hair loss, but the exact mechanism is unclear. Treatments like finasteride and minoxidil are used to manage hair loss, though they may have side effects and varying effectiveness.
Gene editing for hair loss is not yet viable due to technological and economic challenges. Current treatments like Minoxidil, finasteride, and hair transplants remain the most practical options.
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.
Body hair is more resilient than scalp hair due to different gene expressions and DHT sensitivity. Treatments like minoxidil and finasteride are used for hair loss, but they have varying effects on body and scalp hair.
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.
A 27-year-old male experienced rapid hair loss after dengue fever, which activated a balding gene. The doctor suggested platelet-rich plasma treatment for hair regrowth.
The conversation discusses potential future cures for hair loss, including hair cloning, gene editing, and AI, with current treatments like hair transplants, minoxidil, and finasteride mentioned. Opinions vary on where a cure might originate, with some suggesting countries like China and South Korea.
Minoxidil, finasteride, and dutasteride are commonly used for hair loss treatment, with some users seeing them as long-term solutions while awaiting future advancements like hair follicle cloning or gene engineering. Some users also consider additional treatments like anti-inflammatories, PRP, and hair transplants, but remain skeptical about a definitive cure.
The conversation humorously suggests accepting male pattern baldness by adopting historical hairstyles like those of the Manchus and Japanese, rather than hoping for a cure. It also discusses the potential of gene therapy targeting hair loss, despite skepticism about a definitive cure.
Blocking DHT is not a cure for hair loss; instead, altering how scalp follicles respond to DHT might be more effective. Current treatments like topical finasteride and minoxidil are temporary solutions, and future approaches may involve gene therapy and bioengineering to change follicle behavior.
Developing new hair loss treatments is challenging due to the complexity and cost of trials, and a permanent cure is unlikely soon. Current treatments like Minoxidil and finasteride are used continuously because hair loss is progressive, and future possibilities include gene editing and hair cloning.
Hair cloning is humorously discussed as always being 5-7 years away, with skepticism about its near-term availability. Gene editing to reactivate dormant follicles is suggested as a more likely solution within the next ten years.
Hair loss is linked to the loss of stem cells in hair follicles, and potential treatments include gene editing and microneedling. Discussions also mention using Minoxidil, finasteride, and dermarolling to improve hair growth.
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.
L-arginine may worsen hair loss by potentially increasing testosterone levels, especially in those with a DHT-sensitive gene. Users discuss the effects of increased nitric oxide on hair loss and consider stopping supplements like zinc and l-arginine to see if hair conditions improve.
Blocking DHT is not a complete solution for hair loss; instead, altering the scalp's response to DHT may be more effective. Topical finasteride and minoxidil are current treatments, but future approaches may involve bioengineering, gene therapy, and inflammation control.