The conversation is about using distilled water as a solvent for topical finasteride to reduce systemic absorption. The user is considering avoiding ethanol and propylene glycol to achieve this.
A female user is seeking a DHT blocker without Selenium or Zinc due to hair breakage and is currently using Saw Palmetto, Nature's Bounty Hair, Skin and Nails, Pumpkin seed oil, Dermastamp, and Pura D'or products. She has tried Minoxidil without success and is considering Finasteride but prefers natural options first.
The conversation discusses the potential for developing a biologic "DHT sponge" to neutralize DHT in the bloodstream as a treatment for hair loss, suggesting it could be more targeted and have fewer side effects than current treatments like finasteride and dutasteride. Concerns include the complexity, cost, and potential side effects of such a treatment, as well as skepticism about its feasibility and market interest.
The post discusses a hair loss treatment regimen using saw palmetto, pumpkin seed oil extract, EGCG (green tea) extract, grape seed oil extract, rosemary oil extract, and Zix. The user plans to use these DHT-blockers and 5AR inhibitors for six months and report the results.
A peptide from Japanese water chestnut fruit may help with hair loss by suppressing DHT's effect on hair follicle cell death, potentially serving as a finasteride alternative. The treatment's effectiveness and safety in humans remain uncertain.
The user is using a topical solution containing 1% finasteride and 5% minoxidil for hair loss, with water, glycerin, and PEG-40 hydrogenated castor oil as carrier agents. They are questioning if these ingredients are effective carriers after using the solution for three months.
The user seeks alternatives to Propylene Glycol (PG) for delivering topical finasteride due to scalp irritation. They consider using Propanediol 1,3 and ask for other suggestions.
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 discusses using Rogain foam as a solvent for topical finasteride due to an allergy to propylene glycol. The foam's ingredients, including alcohol SD 40B, are considered suitable for dissolving finasteride for easier application without skin irritation.
A peptide-based delivery system for finasteride shows promise in reducing systemic side effects while maintaining hair growth effectiveness. Combining this with other treatments like minoxidil and RU58841 could enhance results with lower systemic absorption.
A user is seeking advice on creating a homemade finasteride foam similar to over-the-counter Minoxidil foam, due to issues with glycerin and propylene glycol in their current solutions. They are considering using a mixture of ethanol/alcohol and water for the foam.
Topical finasteride may have higher systemic absorption and lower efficacy when using a Propylene Glycol/Ethanol formulation compared to the hydroxypropyl chitosan (HPCH) formulation. The safety profile of topical finasteride relies heavily on the HPCH formulation, and using standard solutions might lead to different pharmacokinetics.
Breezula protects hair follicles from both testosterone and DHT, unlike finasteride, which only protects against DHT. This could potentially lead to significant hair regrowth, similar to results seen in transgender individuals using hormone blockers.
The conversation humorously discusses two resilient hair strands that resist DHT, with mentions of minoxidil and finasteride as ineffective treatments. Users joke about cloning the hairs and the mystery of baldness.
A user is experiencing hair thinning and is using a peptide with oleanic acid as a DHT blocker, along with minoxidil, while waiting for topical finasteride. They plan to use a combination of minoxidil, finasteride, dermastamp, ketoconazole, and scalp massages, but are advised to stick to proven treatments like finasteride and minoxidil.
Topical finasteride with hydroxypropyl chitosan shows significantly less serum absorption and minimal DHT reduction compared to oral finasteride. Users need the specific chitosan formulation to avoid side effects seen with regular ethanol+PG solutions.
A user is making a topical finasteride solution with 0.01% finasteride, 50% ethanol, 15% glycerine, and 35% water, but it doesn't adhere well to the scalp. They seek advice on improving the mixture's consistency without taking oral pills.
The conversation discusses DHT blocking treatments for hair loss, specifically mentioning Minoxidil, Finasteride, and organic flaxseed oil containing omega-3 fatty acids. It highlights skepticism about alternative treatments and emphasizes the proven effectiveness of Finasteride and Dutasteride.
Breezula (clascoterone) and Formula 82F (topical finasteride) are treatments for hair loss that block DHT differently; Breezula competes with DHT at the hormone receptor site without systemic effects, while 82F inhibits the enzyme that converts testosterone to DHT. Breezula may work for those who don't respond to finasteride and vice versa.
A user is seeking feedback on a homemade topical finasteride formula for hair loss, consisting of 7.5 mg of finasteride, propylene glycol, ethanol, and distilled water. They aim to achieve a 0.0125% solution by applying 2 ml daily.
A user is seeking hair loss treatments without using systemic DHT blockers like finasteride due to side effects. Suggestions include clascoterone (not FDA approved), pyrilutamide, RU58841, and low-dose topical finasteride, with a recommendation to consult a doctor.
User taking 1mg finasteride daily for 2 years, wants to block more scalp DHT. Seeks reference for additional topical DHT blockers like alfatradiol and fluridil.
Reducing sebum can indirectly lower DHT levels, with treatments like accutane, tretinoin, and green tea extract acting as DHT blockers. Accutane can lower DHT levels by reducing 5α-reductase activity, but its impact on hair varies.
Liposomal carriers for topical finasteride offer better targeting, reduced side effects, and less irritation compared to alcohol-based solutions, but availability and cost may limit their use. Minoxidil can dissolve in liposomal carriers, enhancing delivery and stability.
Ethosomes are suggested as an effective delivery method for topical finasteride solutions, requiring the addition of a phospholipid like soya lecithins. The user questions why do-it-yourself solutions don't commonly use ethosomes despite their potential benefits.
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.
The user is seeking an alternative solvent for pyrilutamide due to skin irritation from ethanol and propylene glycol. They experienced similar issues with topical minoxidil.