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THE RELATIONSHIP BETWEEN DIURNAL VARIATION OF THE NUMBER OF CELLS IN MITOSIS AND OF THE NUMBER OF CELLS SYNTHESIZING DNA IN THE EPITHELIUM OF THE HAMSTER CHEEK POUCH
Author(s) -
Brown J. M.,
Berry R. J.
Publication year - 1968
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.1365-2184.1968.tb00190.x
Subject(s) - mitosis , cheek pouch , colcemid , mitotic index , biology , population , hamster , microbiology and biotechnology , epithelium , genetics , medicine , environmental health
1. The numbers of cells in mitosis and in DNA synthesis in the epithelium of the hamster cheek pouch have been studied at different times of the day and night. 2. By accumulation of mitotic cells using colcemid, both the rate of entry of cells into mitosis and the duration of mitosis have been estimated at two different times of day. 3. A diurnal variation has been demonstrated in both the mitotic index and in the tritiated thymidine labelling index. Although these variations are of different amplitude and timing, the experimental data fit closely to the hypothesis that the diurnal mitotic variation is the result of a partially synchronous population moving through the DNA synthetic period. No direct action on the mitotic process need be postulated. 4. From the results of mitotic accumulation, it is clear that the rate of entry of cells into mitosis depends on the time of day at which this is studied. There is also the possibility that the duration of mitosis is slightly longer when the mitotic index is high. 5. It is concluded that, at least in the epithelium of the hamster cheek pouch, the diurnal rhythm in the number of mitoses present is a reflection of the diurnal variation in the number of cells synthesizing DNA at some time earlier. Small fluctuations in the mitotic pattern imposed by this partially synchronous population moving from S into mitosis, could be caused by slight variations in the duration of mitosis.

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