The conversation discusses the effectiveness of pyrithione zinc and GT20029 for hair loss. Specific treatments mentioned include Minoxidil, finasteride, and RU58841.
A study that outlines the full model for androgenic alopecia (AGA) which links DHT to cellular senescence in dermal papilla cells, and suggests black chokeberry as a source of cyanidin 3-O-arabinoside polyphenol with potential anti-oxidant properties that could reverse this process. The post encourages reaching out to experts in anti-aging and longevity to research treatments involving the polyphenol.
The conversation is about a user obtaining a compounded treatment for hair loss, including 0.1% latanoprost, 0.2% melatonin, and 1% cetirizine. The user also uses 2.5 mg dutasteride, 5 mg minoxidil, and RU58841 daily, and is at Norwood 2.
Alfatradiol is often discussed at a 1% concentration, but studies typically use 0.025%. Some users report success using it as a topical treatment alongside other hair loss treatments like finasteride.
The user experienced rapid diffuse hair thinning for five years despite no signs of AGA or miniaturization. They tried finasteride and oral minoxidil without success and have checked thyroid, iron, and vitamin D levels.
The conversation discusses anticipation for CB-03-01, a potential new hair loss treatment that may be more effective and have a cleaner safety profile than finasteride. Users are hopeful but cautious, discussing current treatments like minoxidil, nizoral, and dermarolling, and the possibility of combining them with CB-03-01 for better results.
PP405 is ineffective for miniaturized, fibrosed hair follicles in androgenetic alopecia. AMP303 may activate hair follicle stem cells, but minoxidil and finasteride are still the main treatments.
High DHEA levels may contribute to hair loss by increasing DHT in hair follicles, potentially explaining why finasteride is ineffective for some. Treatments like high-dose dutasteride and RU58841 are suggested, but the underlying cause, such as adrenal issues, should be investigated.
A user is asking about the effectiveness and dosage of RU58841 for hair loss, comparing it to Minoxidil and discussing its long-term use alongside Finasteride. They plan to use RU58841 and Finasteride for several years before potentially switching to GT20029.
A new hair loss treatment involving Keratin Microsphere Gel is discussed, with skepticism and jokes about its effectiveness and comparisons to other treatments. Users are doubtful and make light of the situation, referencing past disappointments and the study's focus on mice.
The conversation is about future hair loss treatments. Current treatments mentioned include finasteride, minoxidil, and RU58841, with potential future treatments like GT20029, TDM-105795, JW0061, and follicle cloning.
A 25-year-old with AGA experienced hair thinning and dandruff, stabilized with topical finasteride and minoxidil but saw minimal regrowth. They seek advice on styling and consider oral minoxidil and microneedling for denser hair.
Treatment options for female alopecia androgenetica, discussing the availability of spironolactone online in The Netherlands and other potential treatments like finasteride, minoxidil and RU58841.
PP405 shows promise in hair loss treatment, but stem cell therapy using adipose-derived stem cells and ATP also successfully reversed androgenetic alopecia in mice. Stem cell therapy is costly, and some doubt the effectiveness of PP405 based on press releases.
PP405 is a promising molecule that may reactivate dormant hair follicles, potentially offering a new treatment for hair loss. It is in phase 2 trials, with possible availability between 2027 and 2030.
A naturally occurring sugar, 2-deoxy-D-ribose, in a hydrogel form, shows promise for hair regrowth similar to minoxidil in rats. The user plans to synthesize it for topical application, seeking input from others.
The conversation discusses hair loss and specific treatments like Minoxidil, Finasteride, and RU58841. It also highlights Procyanidin B-2 as a secret ingredient for hair growth.
Latanoprost/bimatoprost's effectiveness in hair loss treatment is discussed, with its potential to convert vellus hairs to terminal hairs. It works differently from minoxidil and finasteride, and may be best for hairline application, but is not a replacement for them due to price and mechanism.
NAD⁺ precursors and EGCG may increase hair density, but users report mixed results with no significant hair gains. Some users suggest combining these with finasteride or dutasteride for better results.
The relative strength of Pyrilutamide compared to RU58841 in terms of androgen receptor binding affinity. It has been noted that Pyrilutamide is 4x stronger than RU58841, with a higher binding affinity than DHT itself.
Dutasteride is more effective than finasteride for hair loss, with some users experiencing fewer side effects. Users share experiences with dutasteride, finasteride, minoxidil, and biotin, discussing dosage and fertility concerns.
The user is experiencing diffuse androgenic alopecia and is trying various treatments, including 5mg finasteride, loniten, and Formula 82D, which contains dutasteride, a steroid, and tretinoin. They report potential regrowth with Formula 82D, despite previous treatments being ineffective.
Elevated PGD2 levels in bald scalp tissue may contribute to hair loss, and treatments like castor oil, finasteride, and minoxidil are discussed as potential solutions. Some users explore alternatives like oral castor oil and cetirizine for those who cannot use finasteride.
Increasing the sult1a1 enzyme on the scalp may improve response to topical minoxidil. The user suggests using a baking soda solution, DMSO, and tretinoin to enhance enzyme activity and minoxidil effectiveness.
A Phase II clinical trial for TDM-105795 has started recruiting in the US, and it might be a promising treatment for hair loss. Many hair loss drugs, including this one, originate from China.
The conversation discusses the tension theory of baldness, suggesting that over-developed masseter muscles may harm hair follicles. Botox injections to relax these muscles reportedly led to an 18% increase in hair count in men with AGA.
miR-205, a tiny RNA, can stimulate hair growth by softening aging hair follicle stem cells in mice. Future tests aim to see if this can work in humans.