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二甲基亚砜可恢复接触抑制诱导的生长停滞并抑制仓鼠细胞中细胞密度依赖性凋亡。

Dimethyl sulfoxide restores contact inhibition-induced growth arrest and inhibits cell density-dependent apoptosis in hamster cells.

作者信息

Fiore M, Degrassi F

机构信息

Centre for Evolutionary Genetics, C.N.R., c/o Department of Genetics and Molecular Biology, University "La Sapienza,", Rome, Italy.

出版信息

Exp Cell Res. 1999 Aug 25;251(1):102-10. doi: 10.1006/excr.1999.4542.

Abstract

Most nontransformed cell lines respond to confluence by arresting the cell cycle in a viable G(1) phase, whereas immortalized cell lines growing in monolayer do not stop cell cycle progression in response to high cell density and are subjected to density-dependent apoptosis. We have examined the effects, in terms of cell growth, apoptosis, and expression of adhesion molecules of culturing contact inhibition-deficient hamster cells in the presence of dimethyl sulfoxide (DMSO). Addition of 1.5% DMSO to the growth medium for 96 h arrested Chinese hamster ovary (CHO) cells in the G(1) phase as a confluent monolayer, associated with a remarkable increase in the expression of the cyclin-dependent kinase inhibitor p27. Cells cultured in DMSO-containing medium showed increased levels of cadherins and alpha5beta1 and beta1 integrin complexes. Cell exposure to DMSO also reduced both cell density-dependent apoptosis and necrosis and resulted in increased Bcl-2 expression. These results converge to indicate that DMSO restores contact inhibition-induced growth arrest and prevents high-density-dependent apoptosis and suggest that the effect of DMSO may be mediated by intracellular signaling triggered by cell-extracellular matrix and cell-cell interactions. Both p27 and bcl-2 appear to be involved in the resumption of growth control accompanying cell adhesion in DMSO-exposed CHO cells.

摘要

大多数未转化的细胞系会通过在存活的G(1)期使细胞周期停滞来响应汇合,而在单层中生长的永生化细胞系不会因高细胞密度而停止细胞周期进程,并且会发生密度依赖性凋亡。我们研究了在二甲基亚砜(DMSO)存在下培养接触抑制缺陷型仓鼠细胞时,DMSO对细胞生长、凋亡及黏附分子表达的影响。向生长培养基中添加1.5%的DMSO 96小时,可使中国仓鼠卵巢(CHO)细胞作为汇合单层停滞在G(1)期,同时细胞周期蛋白依赖性激酶抑制剂p27的表达显著增加。在含DMSO的培养基中培养的细胞,其钙黏蛋白、α5β1和β1整合素复合物水平升高。细胞暴露于DMSO还可降低细胞密度依赖性凋亡和坏死,并导致Bcl-2表达增加。这些结果表明,DMSO可恢复接触抑制诱导的生长停滞,并防止高密度依赖性凋亡,提示DMSO的作用可能由细胞-细胞外基质和细胞-细胞相互作用触发的细胞内信号介导。p27和bcl-2似乎都参与了DMSO处理的CHO细胞中伴随细胞黏附的生长控制恢复过程。

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