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research Finasteride in polycythaemia
research Oil Body-Bound Oleosin-rhFGF-10: A Novel Drug Delivery System that Improves Skin Penetration to Accelerate Wound Healing and Hair Growth in Mice
A new drug delivery system using oil body-bound oleosin-rhFGF-10 improves wound healing and hair growth in mice.
research The preventive and therapeutic efficacy of finasteride and dutasteride in TRAMP mice
Dutasteride showed some prevention of prostate issues but also had limitations, especially with high-grade tumors.
research NOVEL NANOPARTICULATE SYSTEMS FOR IDIOPATHIC PULMONARY FIBROSIS: A REVIEW
Nanoparticles may improve treatment for lung disease by targeting cells better and reducing side effects.
research Core-shell and core-amphiphilic branched shell nanocarriers based on biodegradable hyperbranched polymers, as potential drug delivery systems
The new biodegradable nanocarriers safely and effectively deliver drugs into the skin.
research Niosomes: A Novel Targeted Drug Delivery System
Niosomes are a promising method for delivering drugs directly to targeted areas in the body.
research Preparation of Finasteride via Oxidative Elimination of 2-Iododihydrofinasteride by Using Peroxydisulfates as Oxidizing Agents
Using K2S2O8 as an oxidizing agent in a specific condition, we can make Finasteride with 96.3% yield and 99.6% purity. This method is also good for other compounds and is environmentally friendly.
research Finasteride blocks progesterone synthesis in MA-10 Leydig tumor cells.
Finasteride blocks progesterone production in specific tumor cells, potentially causing side effects.
research Transfollicular drug delivery: current perspectives
Transfollicular drug delivery is promising but needs more research to improve and understand it better.
research Alopecia induced by lopinavir plus ritonavir therapy in an HIV patient.
An HIV patient's complete hair loss was reversed after switching from lopinavir/ritonavir to nelfinavir.
research The Novel Excipient, Dodecyl-2-N, N-dimethylaminopropionate Hydrochloride (DDAIP-HCl) Improves the Flux of Minoxidil in Human Skin
DDAIP-HCl significantly increases minoxidil absorption into the skin.