37 citations
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December 2021 in “Cells” Alopecia areata severity and treatment response are linked to specific cytokine levels.
10 citations
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June 2022 in “Development” Gene regulation evolved differently in mouse and chicken skin, but remained stable in their trunks.
9 citations
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July 2022 in “EMBO molecular medicine” Blocking certain immune signals can reduce skin damage from radiation therapy.
6 citations
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August 2022 in “International journal of molecular sciences” α-Phellandrene may help prevent hair loss by increasing growth factors and cell growth in hair cells through a specific signaling pathway.
6 citations
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June 2012 in “PloS one” A new mRNA variant of the SCF gene in sheep skin produces a shorter, different protein.
3 citations
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January 2024 in “Frontiers in Endocrinology” Androgens can affect glucocorticoid signaling in specific mouse brain areas.
2 citations
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September 2024 in “Animals” Key genes influence melanin in chicken muscles, affecting their value.
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August 2025 GLP-1 receptor agonists can help skin conditions but may cause hair loss and other skin issues.
1 citations
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April 2023 in “Science Advances” High levels of ERK activity are key for tissue regeneration in spiny mice, and activating ERK can potentially redirect scar-forming healing towards regenerative healing in mammals.
September 2025 in “Animals” Key proteins and pathways are crucial for wool fineness, but more research is needed.
April 2025 in “Middle East Fertility Society Journal” Reference values for nine hormones were established to help diagnose PCOS.
30 citations
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February 2023 in “Animals” Hair follicle traits at 6 months can help select cashmere goats for breeding.
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May 2022 in “Animals” Female goslings have darker feathers than males due to more melanin.
12 citations
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December 2023 in “Antioxidants” Blackberry leaves have stronger antioxidant properties than raspberry leaves.
January 2023 in “Karger Kompass. Dermatologie” Scientists are still unsure what triggers the immune system to attack hair follicles in Alopecia areata.
10 citations
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July 2022 in “The journal of investigative dermatology/Journal of investigative dermatology” Human nails and hair follicles have similar gene activity, especially in the cells that contribute to their growth and development.
4 citations
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October 2022 in “Microbial Cell Factories” Certain bacteria from the Citrullus colocynthis plant may be a new source of antibiotics to fight drug-resistant diseases.
44 citations
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February 2023 in “Cell” Fingerprints form uniquely before birth due to specific genetic pathways and local signals.
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February 2023 in “Inflammation and Regeneration” The protein interleukin-1 alpha helps regenerate hair follicles and increase stem cell growth in mice.
Curcuma aeruginosa Roxb. may help treat hair loss by affecting specific biological pathways.
2 citations
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July 2021 in “Genes” A specific genetic change in the KRT71 gene causes a hair loss condition in Hereford cattle.
September 2022 in “Dermatology and therapy” Androgenetic alopecia is linked to heart disease, metabolic issues, and mental health problems.
4 citations
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January 2021 in “Genetics and Molecular Biology” COVID-19 treatments and vaccines face challenges due to genetic differences in people and the virus.
38 citations
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April 2017 in “PLOS Genetics” GRHL3 is important for controlling gene activity in skin cells during different stages of their development.
55 citations
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April 2022 in “Frontiers in Immunology” Cholesterol affects coronavirus spread and could be a target for treatment.
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February 2010 in “Dermatology Online Journal” Vitamin D may help treat hair disorders.
June 2024 in “The American journal of psychiatry” Schizophrenia risk genes may affect early brain development, contributing to the disease.
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July 2018 in “Drug design, development and therapy” Janus kinase inhibitors show promise in treating alopecia areata but need better topical formulations.
Machine learning improves DNA predictions for eye and hair color, but challenges remain for skin tone and facial features.
218 citations
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September 2012 in “Gastroenterology” Colorectal cancer development involves both genetic changes and epigenetic alterations like DNA methylation and microRNA changes.