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CIRCADIAN RHYTHMS IN MOUSE EPIDERMAL BASAL CELL PROLIFERATION
Author(s) -
Clausen O. P. F.,
Thorud E.,
Bjerknes R.,
Elgjo K.
Publication year - 1979
Publication title -
cell proliferation
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.647
H-Index - 74
eISSN - 1365-2184
pISSN - 0960-7722
DOI - 10.1111/j.1365-2184.1979.tb00154.x
Subject(s) - mitosis , cell cycle , biology , circadian rhythm , epidermis (zoology) , microbiology and biotechnology , flow cytometry , cell , phase (matter) , cell division , basal (medicine) , biophysics , chemistry , endocrinology , anatomy , genetics , organic chemistry , insulin
Several kinetic parameters of basal cell proliferation in hairless mouse epidermis were studied, and all parameters clearly showed circadian fluctuations during two successive 24 hr periods. Mitotic indices and the mitotic rate were studied in histological sections; the proportions of cells with S and G 2 phase DNA content were measured by flow cytometry of isolated basal cells, and the [ 3 H]TdR labelling indices and grain densities were determined by autoradiography in smears from basal cell suspensions. The influx and efflux of cells from each cell cycle phase were calculated from sinusoidal curves adapted to the cell kinetic findings and the phase durations were determined. A peak of cells in S phase was observed around midnight, and a cohort of partially synchronized cells passed from the S phase to the G 2 phase and traversed the G 2 phase and mitosis in the early morning. The fluctuations in the influx of cells into the S phase were small compared with the variations in efflux from the S phase and the flux through the subsequent cell cycle phases. The resulting delay in cell cycle traverse through S phase before midnight could well account for the accumulation of cells in S phase and, therefore, also the subsequent partial synchrony of cell cycle traverse through the G 2 phase and mitosis. Circadian variations in the duration of the S phase, the G 2 phase and mitosis were clearly demonstrated.

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