Lab-grown hair using iPSCs is being explored, but practical applications are limited. Finasteride is suggested as the only current effective treatment.
Verteporfin is being explored for its potential to improve hair transplant outcomes by reducing scarring and increasing donor hair follicles. There is skepticism about the results, with some claiming misleading presentation of evidence.
Scientists have grown natural-looking hair from stem cells, potentially revolutionizing hair growth treatments. Concerns include cost, DHT resistance, and the need for future procedures.
A German startup, Mane Biotech, developed a head wearable device to reactivate hair follicle stem cells, sparking skepticism among users. Some users suspect it might be a scam, while others are interested in more information from the company's newsletter.
DHT causes hair loss by driving cells into senescence, and a polyphenol in black chokeberry may reverse this. A product using this theory is being considered for use alongside finasteride, minoxidil, and microneedling.
The conversation discusses using USB microscopes for scalp photos and provides a link to an overview of trichoscopy. Treatments mentioned include Minoxidil, finasteride, and RU58841.
The conversation discusses the delay in the PP405 Phase 2 study results, now expected by the end of 2025, and skepticism about research practices. There is also mention of optimism for Amplifica's AMP303 and a topical treatment in early testing.
A user is interested in Absci's AI-driven antibody platform, ABS-201, for treating androgenetic alopecia, which shows promising preclinical results and potential for hair regrowth and pigmentation restoration. However, concerns are raised about the drug's development timeline and its advantages compared to existing treatments.
SCUBE3 is available online but poses risks like tumor promotion and high costs. Users advise against using it due to health concerns and inefficacy as a standalone treatment.
Stem cell injections for hair loss are being discussed, with concerns about their effectiveness and high cost. The user is considering this treatment before opting for a hair transplant.
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.
Exosomes from mesenchymal stem cells can increase hair growth by enhancing anagen duration and hair shaft thickness through the Wnt/beta-catenin pathway. Phase 2 trials show improved hair counts over 24 weeks.
Combining microneedling with Low Level Laser Therapy (LLLT) for hair growth, with discussions on device legitimacy and effectiveness. Alternatives like PEMF and the use of oral and topical treatments such as dutasteride, minoxidil, and finasteride are also considered.
RepliCel has purchased Trichoscience, and they have a video about hair multiplication. The conversation also mentions treatments like Minoxidil, finasteride, and RU58841.
The conversation discusses affordable low-level light therapy (LLLT) products for hair loss, with users debating the effectiveness of red LEDs versus lasers. The original poster is already using finasteride, minoxidil, ketoconazole, and microneedling, and is seeking budget-friendly LLLT options to add to their regimen.
A user diagnosed with lymphoma is advised to stop finasteride during chemotherapy, with suggestions to consider treatments like Dutasteride and Minoxidil post-recovery. The focus is on prioritizing health over hair loss, with encouragement and advice from others who have experienced similar situations.
High frequency ultrasonography and HR-MRI can help identify hair shedding causes like inflammation and fibrosis. The conversation discusses the potential of using these technologies to evaluate treatments like Verteporfin for hair regeneration.
Topical finasteride in a liposomal formulation reduces systemic absorption compared to ethanol solutions. The user is seeking sources for such products, noting that popular options like morr-f are not liposomal.
The conversation is about two new videos on exosomes, focusing on how they work and a Q&A session about their use. Specific treatments for hair loss are not discussed.
A stem cell and adenosine triphosphate cocktail showed promising results in hair regrowth for male and female mice, with potential for future clinical trials. Users humorously reacted to the success in mice, expressing hope for human application.
The conversation discusses using a violet ray device for hair regrowth, citing a case where zinc ion treatments showed promising results. It also mentions similar devices like the Growcombr and niostem helmet.
Pelage is recruiting for phase 2 trials, showing promise for treating bald regions. The discussion highlights its potential effectiveness based on its mechanism of action.
The conversation is about a user trying to fund lab testing for RU58841 to verify its legitimacy, as there are doubts about its effectiveness. Some users express skepticism about RU58841, suggesting alternatives like KX-826.
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.
Hair cloning claims by Dr. Gho are widely considered a scam, with skepticism about the effectiveness of his hair stem cell transplantation. Users suggest that if it were effective, wealthy individuals would opt for it over traditional methods like FUE transplants.
Amplifica is testing a compound called AMP-303 for hair loss, but it's not Scube3 or osteopontin. The timing for the results from the clinical trial is unknown.
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.
Researchers at the University of Virginia discovered a new group of stem cells in hair follicles that could potentially restore hair growth. The findings suggest that activating these stem cells might offer a new way to combat hair loss, though practical treatments are still years away.
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.