Deoxyribose sugar gel may stimulate hair regrowth similarly to minoxidil by enhancing blood supply and follicle activity. Human trials are necessary, and current products have mixed results.
Finasteride users discuss potential side effects, including Post Finasteride Syndrome (PFS), with varying opinions on its legitimacy and impact. Some users report side effects like changes in semen consistency and reduced pre-ejaculate, while others emphasize the rarity and reversibility of side effects.
Finasteride and Dutasteride do not cause depression or "Post Finasteride Syndrome," with concerns often linked to the nocebo effect and preexisting mental health issues. The EU is unlikely to ban these drugs, but access may become more restricted due to ongoing debates.
Some men have strong balding genetics that treatments like Dutasteride, Minoxidil, or Finasteride may not fully address. Early intervention is believed to help, but many accept hair loss without treatment.
Finasteride can reduce neuroactive steroids, causing side effects like depression, anxiety, and sexual dysfunction. Some users experience persistent symptoms after stopping finasteride, while others use alternative treatments like topical solutions.
A new treatment using dermal sheath cup cells may regrow hair and could require repeat treatments every 8 years. Users discuss ongoing trials and plan to use finasteride and minoxidil until the treatment is available.
Corticosterone inhibits GAS6, affecting hair follicle stem-cell activity, with potential implications for stress-related hair loss. Ashwagandha and Vitamin K are suggested for reducing cortisol, but their effectiveness is debated.
Hair follicle stem cells remain in bald individuals, but progenitor cells do not, raising questions about hair regrowth claims by Pelage. PP405 is discussed as a potential treatment, with skepticism about its effectiveness compared to existing treatments like Minoxidil and Finasteride.
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.
A breakthrough in hair follicle cultivation using induced pluripotent stem cells (iPSCs) has been achieved, producing large hair follicles suitable for transplantation. Clinical trials for this hair multiplication technology are planned in partnership with Yinguan Biotechnology.
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.
Relaxation may promote hair growth by reducing corticosterone, which affects hair follicle stem cells. Corticosteroids are used for alopecia areata, but their long-term use for androgenic alopecia is uncertain.
HairStemCell Transplant claims to reuse the donor area without removing the entire hair cell, but results in finer hair that may not regrow after cycles. The technique is costly and less effective than traditional transplants for full coverage.
Finasteride and dutasteride are discussed for hair loss, with concerns about their effects on neurosteroids and potential side effects like depression. Alternatives like topical estrogen and lifestyle changes are considered, with varying opinions on mental health and hair regrowth.
A new stem cell method for culturing hair follicles is being developed as an alternative to Minoxidil, finasteride, and RU58841. There are concerns about its cost and accessibility despite plans for commercialization.
A new "third cell" discovery in Japan could be key to fully regenerating hair follicles, with human trials possibly starting in 2027-2028. AI is expected to accelerate medical discoveries, potentially leading to a hair loss cure within a few years.
The conversation is about finding locations in the USA for stem cell-enriched fat transfer to the scalp as a treatment for hair loss. The user is seeking suggestions for where to undergo this procedure.
Male pattern baldness (MPB) may be influenced by androgen receptors in scalp hair follicles and potentially poor blood flow. Transplanted hair is not immune to DHT, and factors like inflammation and scalp tension might also contribute to hair loss.
Hair cell therapy and follicle cloning are still in experimental stages, with treatments like hair multiplication and regenerative hair therapy being marketed but not yet proven to create unlimited new follicles. There is skepticism about the effectiveness and legitimacy of these treatments, with some considering them scams.
HairClone is offering a Dermal Papilla Cell Hair Multiplication procedure in Guatemala, raising questions about its effectiveness and regulatory reasons for the location. Users express skepticism and curiosity about the treatment's success and potential costs.
A potential non-invasive topical treatment targeting the WNT Signaling Pathway for hair regeneration is being researched, with positive results on human hair follicle cells. Current effective treatments for hair loss include Minoxidil, finasteride, and hair transplantation.
Minoxidil and finasteride are more effective for diffuse thinning and crown balding because these areas have miniaturizing but still alive hairs that respond well to treatment. The hairline is less responsive to these medications due to its androgen sensitivity and often requires a transplant for restoration.
Researchers are working on regenerating hair follicles using stem cells, but a cure for baldness is still years away. Current treatments mentioned include Minoxidil, finasteride, and RU58841.
The user experienced new hair growth after switching from oral finasteride to topical RU58841 with minoxidil and undergoing stem cell therapy. They noticed new hairs at the hairline and temples, but are unsure which treatment is responsible.
Scalp DHT suppression is more effective than systemic suppression, with 0.5 mg finasteride blocking 85-90% of scalp DHT. The discussion seeks further insights on this topic.
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.
The conversation is about whether topical finasteride and minoxidil need to be applied directly to the affected areas of the scalp or if they can be spread through blood vessels. It also asks how long topical finasteride remains on a pillow.
PP405 is a new topical drug that reactivates dormant hair follicle stem cells by inhibiting the MPC protein, shifting cell metabolism to glycolysis, and potentially regrowing hair even in bald areas. It differs from minoxidil and finasteride as it does not alter hormones or blood flow but instead targets cell metabolism.
The conversation discusses the complexity of reversing hair loss and the need for a treatment that specifically targets DHT levels without affecting other bodily functions. It mentions finasteride as a current treatment but highlights the desire for a solution that works solely on the scalp.
PTD-DBM is being explored for hair regrowth by targeting CXXC5, with clinical trials expected after pre-clinical studies. Users express anticipation and skepticism about its effectiveness.