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February 2002 in “Journal of Biological Chemistry” HOXC13 is crucial for regulating hair keratin genes in hair follicles.
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October 1999 in “Developmental Dynamics” Mutations in the hairless gene in mice affect its expression and lead to a range of developmental issues in multiple tissues.
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December 2016 in “Journal of Biomedical Materials Research Part A” Bone-forming cells grow well in 3D polymer scaffolds with 35 µm pores.
December 2022 in “American journal of medical genetics. Part A” A person got uncombable hair syndrome from two copies of chromosome 1 from their mother.
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June 2021 in “Developmental biology” Dermal EZH2 controls skin cell development and hair growth in mice.
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April 2019 in “Molecular Informatics” Researchers developed reliable models to predict how well certain compounds bind to androgen receptors, emphasizing the importance of atomic electronegativity.
February 1990 in “PubMed” Hair follicle cells and skin cells differ in keratinization and other features.
Polydopamine is promising for personalized medicine and biomedical technology due to its strong adhesion and biocompatibility.
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July 2023 in “Nature communications” MOF controls key genes for skin development by regulating mitochondrial and ciliary functions.
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January 1989 in “Genes & Development” Keratin expression reflects cell organization and differentiation, not causes it.
August 2024 in “Nature Communications” Softer hydrogels help wounds heal better with less scarring.
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May 1988 in “Differentiation” Trichocytic cytokeratins are found in hair, nails, tongue, and thymus cells, showing complex regulation in tissue development.
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January 1989 Four antibodies were developed to help study hair follicle cell differentiation.
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February 1992 in “Development” Type II keratin genes are crucial for hair follicle differentiation and have a conserved structure and expression pattern.
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September 2009 in “Acta Ophthalmologica” Hyper-keratinisation in Meibomian glands contributes to gland dysfunction.