
Hair follicles undergo continuous cycles of growth, involution and rest. This process, referred to as the hair growth cycle, has a periodicity of weeks to months. At the same time, skin and hair follicles harbor a functional circadian clock that regulates gene expression with a periodicity of approximately twenty four hours. In our recent study we found that circadian clock genes play a role in regulation of the hair growth cycle during synchronized hair follicle cycling, uncovering an unexpected connection between these two timing systems within skin. This work, therefore, indicates a role for circadian clock genes in a cyclical process of much longer periodicity than twenty four hours.
570, Aging, 1.1 Normal biological development and functioning, aging, hair loss, CLOCK Proteins, Gene Expression, 600, Clinical sciences, Biological Sciences, Circadian clock, hair growth cycle, Circadian Rhythm, Biological Clocks, Biochemistry and cell biology, Genetics, Animals, Humans, cell cycle, Biochemistry and Cell Biology, Sleep Research, Hair Follicle
570, Aging, 1.1 Normal biological development and functioning, aging, hair loss, CLOCK Proteins, Gene Expression, 600, Clinical sciences, Biological Sciences, Circadian clock, hair growth cycle, Circadian Rhythm, Biological Clocks, Biochemistry and cell biology, Genetics, Animals, Humans, cell cycle, Biochemistry and Cell Biology, Sleep Research, Hair Follicle
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