32 citations
,
January 1994 in “Skin Pharmacology and Physiology” Minoxidil helps hair growth by activating enzymes in hair follicles.
32 citations
,
March 2013 in “EMBO journal” The plant hormone auxin activates the TOR pathway, affecting gene expression related to growth and cell size.
1 citations
,
April 1998 in “PubMed” Nexin 1 helps control hair growth in young rats.
October 2025 in “Advanced Materials” New lipid/fiber microplexes improve mRNA therapy for degenerative diseases by enhancing cell function and treatment effectiveness.
2 citations
,
August 2019 in “Turkish Journal of Chemistry” Researchers made minoxidil efficiently using cobalt ferrite nanoparticles as a reusable catalyst.
1 citations
,
November 2014 in “Thérapie” Potassium channel activators like nicotinamide and minoxidil might help treat solid tumors.
Nano-Zinc oxide on skin reduces hair follicle stem cell differentiation.
Mechanical stress causes ligament thickening through WISP-1 and Hedgehog signaling.
32 citations
,
July 2018 in “FEBS letters” A specific protein complex increases the activity of a plant enzyme, but this action is not required for plant root hair growth.
229 citations
,
May 2006 in “Journal of Experimental Botany” Reactive oxygen species are essential for plant root hair growth.
April 2012 in “KSBB Journal” Minoxidil analogs can be improved for hair growth inhibition by modifying specific parts of their structure.
2 citations
,
September 2020 in “International Journal of Molecular Sciences” Removing certain hair follicle stem cells worsens skin reactions to allergens.
60 citations
,
December 2013 in “PLoS ONE” EETs can delay seizures by affecting GABA activity, offering potential new treatments for seizures.
253 citations
,
June 2004 in “Journal of Controlled Release” Smaller nanoparticles improve minoxidil delivery through hair follicles.
February 2024 in “Indian Journal of Chemistry” Compound N4 effectively kills breast cancer cells and compounds N2 and N3 have strong antibacterial and antifungal properties.
39 citations
,
January 2015 in “Journal of Electroanalytical Chemistry” New sensor detects minoxidil accurately and effectively.
November 2024 in “Journal of Investigative Dermatology” Understanding snoRNA regulation may help slow skin aging.
52 citations
,
April 2002 in “Brain Research” Lower allopregnanolone levels increase stress-related dopamine release in the brain.
April 2023 in “Journal of Investigative Dermatology” SOX2 helps reduce wound size and pressure ulcer formation by suppressing oxidative stress and increasing antioxidant activity in mice.
March 2012 in “Journal of The American Academy of Dermatology” Higher levels of certain nerve-related proteins are linked to hair loss in women with scalp pain.
54 citations
,
May 2019 in “Multiple Sclerosis and Related Disorders” Azathioprine can help with relapses and disability in NMOSD but has more side effects and needs more research.
January 2025 in “SSRN Electronic Journal” 1 citations
,
January 2014 in “PubMed” Certain substances can decrease or increase exploratory behavior in rodents.
2 citations
,
October 2020 in “Journal of Pharmacology and Experimental Therapeutics” Minoxidil does not work to inhibit lysyl hydroxylases in newborn mouse lungs.
April 2025 in “Journal of the Association for Research in Otolaryngology” NM2 and RLC phosphorylation are essential for normal inner ear hair cell function.
miR-214-3p helps nerve repair and recovery.
March 2026 in “Research Square” Polymer dot nanozymes and exosomes, with laser stimulation, speed up wound healing.
17 citations
,
April 1972 in “PubMed” Minoxidil lowers blood pressure and spreads throughout the body in normal rats.
61 citations
,
April 2018 in “Frontiers in endocrinology” Sex steroids produced in the hippocampus are crucial for brain functions like memory and learning in rodents.
23 citations
,
March 1988 in “Biochemical Pharmacology” Minoxidil stops cells from making prostacyclin, which may help with hair growth. More research is needed.