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NHIK 3025细胞在细胞周期中的细胞和细胞核体积

Cellular and nuclear volume during the cell cycle of NHIK 3025 cells.

作者信息

Steen H B, Lindmo T

出版信息

Cell Tissue Kinet. 1978 Jan;11(1):69-81. doi: 10.1111/j.1365-2184.1978.tb00876.x.

Abstract

The distribution of cellular and nuclear volume in synchronous populations of NHIK 3025 cells, which derive from a cervix carcinoma, have been measured by electronic sizing during the first cell cycle after mitotic selection. Cells given an X-ray dose of 580 rad in G1, were also studied. During the entire cell cycle the volume distribution of both cells and nuclei is an approximately Gaussian peak with a relative width at half maximum of about 30%. About half of this width is due to imperfect synchrony whereas the rest is associated with various time invariant factors. During S the mean volume of the cells grows exponentially whereas the nuclear volume increases faster than for exponential kinetics. Hence, although cellular and nuclear volumes are closely correlated, their ratio does not remain constant during the cell cycle. Volume growth during the first half of G1 is negligible especially for nuclei where the growth appears to be closely associated with DNA-synthesis. For unirradiated cells the growth of cellular and nuclear volume is negligible also during G2 + M. In contrast, the X-irradiated cells continue to grow during the 6 hr mitotic delay with a rate that is constant and about half of that observed in late S. Hence, radiation induced mitotic delay does not appear merely as a lengthening of an otherwise normal G2. During G1 and S the irradiated cells were identical to unirradiated ones with respect to all the parameters measured.

摘要

对源自子宫颈癌的NHIK 3025细胞同步群体中的细胞和细胞核体积分布进行了测量,测量是在有丝分裂选择后的第一个细胞周期内通过电子大小测量法进行的。还研究了在G1期给予580拉德X射线剂量的细胞。在整个细胞周期中,细胞和细胞核的体积分布均为近似高斯峰,半峰宽约为30%。该宽度的约一半归因于同步性不佳,其余部分与各种时间不变因素有关。在S期,细胞的平均体积呈指数增长,而细胞核体积的增长速度比指数动力学更快。因此,尽管细胞和细胞核体积密切相关,但它们的比值在细胞周期中并不保持恒定。G1期前半段的体积增长可忽略不计,尤其是对于细胞核而言,其增长似乎与DNA合成密切相关。对于未受辐照的细胞,在G2 + M期细胞和细胞核体积的增长也可忽略不计。相比之下,经X射线辐照的细胞在6小时的有丝分裂延迟期间持续生长,其速率恒定,约为S期末观察到的速率的一半。因此,辐射诱导的有丝分裂延迟似乎不仅仅是正常G2期的延长。在G1期和S期,辐照细胞在所有测量参数方面与未辐照细胞相同。

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