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肠隐窝增殖。II. 有丝分裂指数数据的计算机建模为无有丝分裂活动时的横向和纵向细胞迁移提供了进一步证据。

Intestinal crypt proliferation. II. Computer modelling of mitotic index data provides further evidence for lateral and vertical cell migration in the absence of mitotic activity.

作者信息

Loeffler M, Potten C S, Paulus U, Glatzer J, Chwalinski S

机构信息

Medizinische Universitätsklinik, Köln, F.R.G.

出版信息

Cell Tissue Kinet. 1988 Jul;21(4):247-58. doi: 10.1111/j.1365-2184.1988.tb00784.x.

Abstract

The position-dependent mitotic index before, and 1, 2 and 3 h after vincristine was scored. The accumulation of cells in mitosis leads to an increase in the mitotic index from 0.06 to 0.34 at crypt positions 8-12. Surprisingly, the leading edge of the position-related mitotic index distribution moves to higher crypt positions although cell division was stopped. In addition, the vertical clustering of mitotic figures in sections was recorded. The data were examined using a previously described computer crypt model. We conclude: the average mitotic phase duration is about 0.7 h (40 min) and varies little with cell position; the geometrical correction factor for overscoring mitoses in crypt sections is about 0.6-0.7 and adjacent cell columns can merge. Lateral cell displacement after mitosis, as predicted in a previous model analysis, would be a mechanism to counteract other forces that tend to reduce the crypt circumference. In the normal steady state merging and expansion processes would just balance each other. This would not follow if one mechanism was blocked. Thus we propose a new concept in which the crypt geometry would be dynamically determined by cell proliferative activity in connection with lateral positioning of new cells on one hand and contracting forces on the other hand.

摘要

对长春新碱处理前以及处理后1小时、2小时和3小时的位置依赖性有丝分裂指数进行评分。有丝分裂细胞的积累导致隐窝8 - 12位置的有丝分裂指数从0.06增加到0.34。令人惊讶的是,尽管细胞分裂停止,但位置相关有丝分裂指数分布的前沿移向更高的隐窝位置。此外,记录了切片中有丝分裂图像的垂直聚集情况。使用先前描述的计算机隐窝模型对数据进行检查。我们得出结论:平均有丝分裂期持续时间约为0.7小时(40分钟),且随细胞位置变化不大;隐窝切片中有丝分裂过度计分的几何校正因子约为0.6 - 0.7,相邻细胞列可以合并。如先前模型分析所预测,有丝分裂后细胞的侧向位移将是一种抵消其他倾向于减小隐窝周长的力的机制。在正常稳态下,合并和扩展过程将相互平衡。如果一种机制被阻断,情况将并非如此。因此,我们提出一个新概念,即隐窝几何形状将由细胞增殖活动动态决定,一方面与新细胞的侧向定位有关,另一方面与收缩力有关。

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