The conversation discusses potential new treatments for androgenetic alopecia (AGA), including verteporfin, pyrilutamide, and hair cloning. There is optimism about scientific advancements providing alternatives to minoxidil and finasteride.
A man with thick, white hair is admired for his genetics, leading to discussions about hair loss and the preference for white hair over balding. Some speculate about the use of treatments like finasteride.
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.
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.
The conversation discusses personal experiences with hair loss and highlights the potential impact of anemia and nutrient deficiencies on hair health. Treatments mentioned include changing shampoo/conditioner, taking MSM, collagen, hyaluronic acid, astaxanthin, B12, folate, and bovine blood capsules.
RepliCel has purchased Trichoscience, and they have a video about hair multiplication. The conversation also mentions treatments like Minoxidil, finasteride, and RU58841.
Minoxidil may inhibit collagen synthesis at high concentrations, with anecdotal reports of skin aging but limited research. Dermatologists and other specialists show little interest in studying minoxidil's side effects.
The conversation is about the potential impact of RU58841 on male fertility, specifically regarding sperm concentration, total count, and motility. The user is curious about the likelihood of RU58841 reducing fertility based on its mechanism of action and comparisons to similar substances.
The conversation discusses the potential benefits and risks of using Methionine and Glycine for hair loss, with concerns about cancer risk if not balanced properly. The user seeks opinions on these amino acids for hair health and overall benefits.
The conversation discusses an interview with Dr. Tsuji about hair follicle stem cell multiplication and the financial challenges of starting human clinical trials. It also mentions the need for funding to secure a patent for a protein that promotes hair growth.
Genetic variations influence how people respond to dutasteride for hair loss, with some benefiting more from finasteride. Dutasteride is effective for most, but genetic differences may cause it to be less effective for some.
The conversation humorously acknowledges the role of mice in testing Minoxidil for hair loss while also discussing the ethics of animal testing. Some users argue against animal testing, citing cruelty, while others defend its necessity for medical advancements.
The conclusion of this conversation about hair loss is that genetics play a significant role in determining hair loss, and specific treatments like finasteride may not be effective against certain compounds like masteron and trenbolone.
The DNA Trichotest is considered unreliable for predicting hair loss treatment responses, and topical spironolactone is questioned for its effectiveness and safety in cis males. Finasteride and Dutasteride are recommended as more reliable treatments for androgenic alopecia.
A new study that found a single chemical could potentially be responsible for hair loss, and the potential to use this discovery to stimulate hair growth. The conversation also includes various treatments such as Minoxidil, Finasteride, RU58841, microneedling, DUT, and Botox for hair loss.
A 113 year old man who has more hair than most people, and the conversation is discussing potential genetic factors that may be responsible for this. Possible treatments such as dermarolling and minoxidil, finasteride, and RU58841 are mentioned.
The conversation humorously discusses hair loss treatments, mentioning Minoxidil, finasteride, and RU58841. It suggests that affordable genetic therapy could be the ultimate solution.
The conversation humorously discusses the complexity of understanding and treating male pattern hair loss, mentioning treatments like Minoxidil, finasteride, RU58841, Dr. Brotzu's lotion, and Dr. Tsuji's hair cloning. The original post satirically claims that only those with high intelligence can appreciate these treatments.
The conversation is about a user interested in participating in hair cloning clinical trials due to their fine hair and previous positive experience with clinical trials. They are seeking information on how to volunteer for such trials.
User hoodoomoovoo discusses their interest in stem cell research and its potential for hair loss treatment. They share links to studies and mention ongoing trials, expressing optimism for a future solution to hair loss.
The user is questioning why they are not experiencing hair loss like their family members. They are considering whether genetics or preventive treatments like Minoxidil, finasteride, or RU58841 might be influencing their hair retention.
PTD-DBM therapy for hair loss is being developed by Dr. Kang-Yell Choi, with human testing planned in South Korea. Some clinics in the U.S. offer PTD-DBM/valproic acid therapy, but it hasn't completed trials yet.
A 16-year-old is experiencing hair loss and is using minoxidil, finasteride, and plans to add RU58841, while considering other treatments like MK-677 and microneedling. Concerns are raised about the potential impact of these treatments on puberty and development.
Minoxidil alone is not effective for significant hair regrowth; combining it with finasteride or dutasteride is necessary. Additional treatments like hair transplants, microneedling, or oral medications are recommended for better results.
A user tried the Rapid Minoxidil Response Test (TrichoGene) and found they don't respond to topical Minoxidil, so they added tretinoin. The test is available internationally, and another user is considering ordering it.
J. Hewitt plans to trial hair multiplication in Japan by the end of 2019. The technique was developed by German researchers at the University of Berlin and formed the company "TissUse."
The conversation discusses hair loss treatments, including Minoxidil, finasteride, and RU58841. It also mentions ongoing human trials for hair multiplication/cloning at Yokohama National University, with skepticism about the timeline.
CRISPR Cas9 could potentially treat baldness by targeting specific genes in hair follicles without affecting other body functions. There is optimism about its future use, despite ethical concerns and the current reliance on treatments like minoxidil and finasteride.