February 2025 in “Biomolecules” Melatonin can help or hinder hair growth depending on the dose.
3 citations
,
April 2014 in “Journal of Dietary Supplements” CARI ONE helps start hair growth and makes hair follicles bigger and more numerous.
7 citations
,
July 2017 in “bioRxiv (Cold Spring Harbor Laboratory)” Passage numbers affect cell growth and experiment results.
34 citations
,
June 2011 in “Alcoholism: Clinical and Experimental Research” Three drugs change mice's alcohol drinking patterns by affecting GABAA receptors.
January 2023 in “African Arts” June 2025 in “OPAL (Open@LaTrobe) (La Trobe University)” A new hair dye method uses polyphenols and oxidation to create a long-lasting brown color on gray hair.
16 citations
,
November 1994 in “Developmental Biology” Retinoic acid causes gland formation instead of hair in mouse skin by altering epidermal and dermal interactions.
September 2020 in “Research Square (Research Square)” Goat skin adapts to seasonal changes through genes that respond to daylight length, affecting hormone levels and potentially making skin cells light-sensitive.
January 2003 in “Linchuang pifuke zazhi” Melanin granules can be expelled by exocytosis.
January 2013 in “Wool textile journal” January 2011 in “China Animal Husbandry & Veterinary Medicine” Constant-release melatonin reduces SOX21 gene expression in goats during the hair follicle resting phase.
1 citations
,
January 1992 in “Juntendō Igaku/Juntendo igaku” Minoxidil promotes hair growth by increasing blood flow and directly affecting hair follicles.
9 citations
,
June 2024 in “Genes” Key genes linked to wool quality in Spanish Merino sheep can improve fine wool production.
Arginine deficiency hinders hair growth in androgenetic alopecia, but restoring it can promote hair regeneration.
3 citations
,
October 2020 in “Internatuinal Journal of Radiation Research” Gamma irradiation can stimulate hair growth by promoting new blood vessel formation.
41 citations
,
October 2019 in “Biomolecules” Retinoic acid can either maintain stem cells or make them specialize, depending on the cell type.
8 citations
,
May 2024 in “PLoS Biology” Gap junctions help control feather pattern formation in chickens.
5 citations
,
January 2011 in “Archives de Pédiatrie” A severe form of Netherton syndrome caused by a specific gene mutation led to neonatal deaths in a family.
14 citations
,
April 2022 in “Functional & Integrative Genomics” Key molecular interactions were identified that help understand hair follicle development in cashmere goats.
6 citations
,
August 2023 in “BMC genomics” The study found that genetic differences related to hair growth and other traits help cashmere goats adapt to high-altitude environments.
2 citations
,
January 2014 in “Journal of Cytology & Histology” Rapamycin and anti-EGFR antibody reduce LAM/TSC cell migration and blood vessel growth in the uterus.
91 citations
,
July 2010 in “Tissue Engineering Part A” Low-oxygen conditions and ECM degradation products increase the healing abilities of perivascular stem cells.
83 citations
,
March 1995 in “PLANT PHYSIOLOGY” The differentiation stage of root epidermal cells is crucial for root hair depolarization in Medicago sativa when exposed to specific Nod factors.
239 citations
,
December 2013 in “Scientific Reports” A new method quickly creates controllable cell clusters for tissue engineering and drug testing.
December 2025 in “Journal of the European Academy of Dermatology and Venereology” The correction does not change the study's main findings.
December 2018 in “72° Congresso di Anatomia e Istologia” Micro-grafts improved hair growth in patients with hair loss.
November 2022 in “Journal of Investigative Dermatology” Dynlt3 is important for melanosome transport and skin coloration.
April 2017 in “Journal of Dermatological Science” Certain flavonoids can improve the growth of pigmented hair in mice.
18 citations
,
January 2015 in “Experimental Dermatology” New mutations in KRT83 and KRT86 are linked to the hair disorder monilethrix.
54 citations
,
October 2024 in “Nature Communications” Molybdenum oxide nanozymes can effectively treat and monitor acute kidney injury by reducing oxidative stress.