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- A Meeting of Two Chronobiological Systems: Circadian Proteins Period1 and BMAL1 Modulate the Human Hair Cycle Clock
- Mechanism of Sleep Disturbance in Children with Atopic Dermatitis and the Role of the Circadian Rhythm and Melatonin
- Multi-layered environmental regulation on the homeostasis of stem cells: The saga of hair growth and alopecia
- Brain and muscle Arnt-like protein-1 (BMAL1) controls circadian cell proliferation and susceptibility to UVB-induced DNA damage in the epidermis
- Melatonin regulates the periodic growth of secondary hair follicles through the nuclear receptor RORα
- Hair Follicles as a Critical Model for Monitoring the Circadian Clock
- The Opioid Receptor Influences Circadian Rhythms in Human Keratinocytes through the β-Arrestin Pathway
- Congenital Adrenal Hyperplasia
- Melatonin preparations in dermatological practice
- Possible contribution of chronobiology to cardiovascular health
- Local circadian clock gates cell cycle progression of transient amplifying cells during regenerative hair cycling
- Investigation of a non-invasive method of assessing the equine circadian clock using hair follicle cells
- Disturbance of the Circadian System in Shift Work and Its Health Impact
- The circadian molecular clock creates epidermal stem cell heterogeneity
- Expression and roles of steroidogenic acute regulatory (StAR) protein in ‘non-classical’, extra-adrenal and extra-gonadal cells and tissues
- Protective Role of Melatonin and Its Metabolites in Skin Aging
- The clock gene brain and muscle Arnt-like protein-1 (BMAL1) is involved in hair growth
- The Modulatable Stem Cell Niche: Tissue Interactions during Hair and Feather Follicle Regeneration
- Sex differences in the hypothalamic–pituitary–adrenal axis’ response to stress: an important role for gonadal hormones
- The clock within
- Regulatory network of ginsenoside biosynthesis under Ro stress in the hairy roots of Panax ginseng revealed by RNA sequencing
- Circadian clocks: from stem cells to tissue homeostasis and regeneration
- Cell Types Promoting Goosebumps Form a Niche to Regulate Hair Follicle Stem Cells
- Recent advances in the molecular mechanisms determining tissue sensitivity to glucocorticoids: novel mutations, circadian rhythm and ligand-induced repression of the human glucocorticoid receptor
- Ephrins Negatively Regulate Cell Proliferation in the Epidermis and Hair Follicle
- Functional analysis of the PIP5K1A gene in Liaoning Cashmere goats: an investigation based on bioinformatics, tissue localization, and biological functions
- Melatonin: A Cutaneous Perspective on its Production, Metabolism, and Functions
- ILC3s as central regulators of mucosal homeostasis and disease pathogenesis (Review)
- Molecular insights into chronotype and time-of-day effects on decision-making
- Primary Generalized Glucocorticoid Resistance or Chrousos Syndrome: Allostasis Through a Mutated Glucocorticoid Receptor