Lab-grown hair using iPSCs is being explored, but practical applications are limited. Finasteride is suggested as the only current effective treatment.
Hair multiplication or cloning is not available anywhere in the world. The conversation also mentions treatments like Minoxidil, finasteride, and RU58841 for hair loss.
Hair appearance fluctuates due to factors like styling, product buildup, and humidity, causing frustration for those with diffuse thinning. Treatments mentioned include minoxidil, finasteride, ketoconazole shampoo, and RU58841, with mixed results.
A user proposed genetically engineering scalp stem cells to stop androgen receptors from causing hair loss. Others discussed the feasibility, existing research, and potential issues with this approach, including targeting the correct cells and unintended effects.
Chinese researchers have successfully created hair follicles in vitro, potentially offering unlimited hair for transplantation and a cure for hair loss. They plan to test these follicles in vivo on human scalps.
Hair systems are effective for hair loss, offering benefits over treatments like finasteride. Personal choice and confidence in appearance are emphasized.
The conversation discusses potential causes of pigmentation around hair follicles, suggesting sebum buildup, autoimmune conditions, or dermatitis. Treatments mentioned include finasteride, dutasteride, and an anti-inflammatory diet, with a recommendation to consult a doctor for a proper diagnosis.
Pilose antler extracts may promote hair growth in androgenetic alopecia by activating hair follicle stem cells through the AKT and Wnt pathways. However, results in mice may not directly apply to humans due to differences in genetic and biochemical conditions.
A woman experiencing hair loss, exacerbated by wearing a hijab, is seeking advice for her upcoming wedding. She has tried various treatments, including minoxidil, finasteride, and stem cell therapy, and is considering using hair fibers and extensions to cover her scalp.
Finasteride is effective for DHT/AR-driven hair loss but not for chromosome 20-driven cases, where treatments like minoxidil, prostaglandin analogs, and low-level laser therapy may be more beneficial. Genetic testing can help determine the underlying cause of hair loss to tailor treatment effectively.
Hair transplants have improved significantly from the old "plug" method, which left unnatural results. Modern techniques by skilled doctors can achieve natural-looking hairlines.
Thorn Medical claims to have a stem cell-based cure for male pattern baldness, promising less scarring and better coverage than traditional hair transplants. However, skepticism remains about the effectiveness and legitimacy of these claims without concrete evidence.
Some individuals experience hair loss despite using treatments like 2.5 mg dutasteride, finasteride, and minoxidil, suggesting sensitivity to DHT or other factors. Various treatments and lifestyle changes are discussed, but results vary, and some consider hair transplants or other solutions.
Some hair loss may be linked to chromosome 20, which isn't affected by DHT blockers like finasteride. Treatments like minoxidil, microneedling, and genetic testing are suggested, but their effectiveness for this type of hair loss is uncertain.
Genetic factors, enzyme activity, and DHT sensitivity affect individual responses to hair loss treatments like finasteride, minoxidil, and dutasteride. Starting treatments early can slow hair loss, but results vary among individuals.
The user noticed hair regrowth after 4 years of hair loss, coinciding with lifestyle improvements like quitting smoking, exercising, and a better diet. They are curious if dormant follicles can recover under improved conditions.
A recent discovery in hair cloning identified a previously unknown cell type essential for hair follicle growth, which could potentially make lab-grown hair viable if translated to humans. However, skepticism remains due to past delays and the challenges of replicating results in humans and making the process affordable.
PP405 trials have completed phase 2a, showing promising results with a 31% stat for hair density increase, and are moving directly to phase 3. Detailed results will be presented at a medical conference in 2026.
The conversation discusses hair loss treatments, focusing on insulin resistance, microneedling with topical melatonin, and stress reduction. Users express skepticism about the advice, preferring proven treatments like minoxidil and finasteride, while some mention alternative methods like dermal incisions and verteporfin for reducing fibrosis.
Hair transplants typically involve spreading follicle extraction across the back and sides of the head to maintain an even appearance, rather than taking a solid rectangle of grafts. FUT procedures, which involve taking a strip of skin, are less common now due to advancements in techniques like FUE, which heal well and are less invasive.
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.
Testosterone within the normal range does not significantly contribute to male pattern baldness (MPB); DHT is the main factor that can be controlled. Genetics play a crucial role in hair loss, and treatments like finasteride and dutasteride, which block DHT, can help despite potentially raising testosterone levels.
Longitudinal partial follicular unit transplantation involves extracting part of the donor follicular unit, allowing the donor area to maintain hair production and potentially increasing transplant yield. The conversation questions if this method is practiced in clinics or remains theoretical, and whether it relates to hair cloning or multiplication.
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.
The conversation discusses androgenetic alopecia (AGA) and questions why treatments focus on lowering DHT levels instead of building resistance to it. It also touches on hair transplantation techniques using body hair.
Androgenetic alopecia is affected by scalp DHT levels, not sensitivity, with treatments like finasteride and dutasteride aiming to optimize these levels. Personalized DHT management is crucial for effective hair growth.
The conversation discusses the hypothesis that a lack of the enzyme 3-alpha hydroxysteroid dehydrogenase (3α-HSD) on the scalp may contribute to hair loss by allowing DHT to accumulate. Despite interest in this theory, no recent research has been conducted, and current treatments like finasteride and minoxidil remain the most supported options.
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.
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.
Creatine may cause hair loss in people with genetic predispositions, but not everyone. The discussion also questions the link between creatine and hair loss, considering factors like gender and hormones.