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Research 21
- 1 The regulatory biology of the human pilosebaceous unit
- [Genetic expression and morphogenesis of the skin in vertebrates].
- Hox in the Niche Controls Hairy-geneity
- <i>Hoxc13</i> mutant mice lack external hair
- Hox genes in development and beyond
- Expression analysis of KAP9.2 and Hoxc13 genes during different cashmere growth stages by qRT-PCR method
- PBX homeobox 1 enhances hair follicle mesenchymal stem cell proliferation and reprogramming through activation of the AKT/glycogen synthase kinase signaling pathway and suppression of apoptosis
- LncRNA-599547 contributes the inductive property of dermal papilla cells in cashmere goat through miR-15b-5p/Wnt10b axis
- Skin regional specification and higher-order <i>HoxC</i> regulation
- The crest phenotype in domestic chicken is caused by a 195 bp duplication in the intron of <i>HOXC10</i>
- Erasing the methyl mark: histone demethylases at the center of cellular differentiation and disease
- EZH1 and EZH2 cogovern histone H3K27 trimethylation and are essential for hair follicle homeostasis and wound repair
- Hox in hair growth and development
- Non-histone Methylation of SET7/9 and its Biological Functions
- Mandibulofacial dysostosis with alopecia results from ETAR gain-of-function mutations via allosteric effects on ligand binding
- Platelet-Rich Plasma (PRP) in Dermatology: Cellular and Molecular Mechanisms of Action
- Ear pinna growth and differentiation is conserved in murids and requires BMP signaling for chondrocyte proliferation
- Reversing Gray Hair: Inspiring the Development of New Therapies Through Research on Hair Pigmentation and Repigmentation Progress
- The mammary hair of <i>Monodelphis domestica</i> and homology of the mammary pilosebacous unit
- The Efficacy of Platelet‐Rich Plasma in Facial Lichen Planus Pigmentosus: A Prospective Pilot Study
- Prenatal transplantation of epidermal neural crest stem cells in malformation of cortical development mouse model