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细胞凋亡:转移效率低下的早期事件。

Apoptosis: an early event in metastatic inefficiency.

作者信息

Wong C W, Lee A, Shientag L, Yu J, Dong Y, Kao G, Al-Mehdi A B, Bernhard E J, Muschel R J

机构信息

Department of Pathology and Laboratory Medicine, University of Pennsylvania, Philadelphia 19104, USA.

出版信息

Cancer Res. 2001 Jan 1;61(1):333-8.

Abstract

Whereas large numbers of cells from a primary tumor may gain access to the circulation, few of them will give rise to metastases. The mechanism of elimination of these tumor cells, often termed "metastatic inefficiency," is poorly understood. In this study, we show that apoptosis in the lungs within 1-2 days of introduction of the cells is an important component of metastatic inefficiency. First, we show that death of transformed, metastatic rat embryo cells occurred via apoptosis in the lungs 24-48 h after injection into the circulation. Second, we show that Bcl-2 overexpression in these cells inhibited apoptosis in culture and also conferred resistance to apoptosis in vivo in the lungs 24-48 h after injection. This inhibition of apoptosis led to significantly more macroscopic metastases. Third, comparison between the extent of apoptosis by a poorly metastatic cell line to that by a highly metastatic cell line 24 h after injection in the lungs revealed more apoptosis by the poorly metastatic cell line. These results indicate that apoptosis, which occurs at 24-48 h after hematogenous dissemination in the lungs is an important determinant of metastatic inefficiency. Although prior work has shown an association between apoptosis in culture and metastasis in vivo, this work shows that apoptosis in vivo corresponds to decreased metastasis in vivo.

摘要

虽然来自原发性肿瘤的大量细胞可能进入循环系统,但其中很少会形成转移灶。这些肿瘤细胞被清除的机制,通常称为“转移效率低下”,目前还知之甚少。在本研究中,我们表明细胞引入后1 - 2天内肺部的凋亡是转移效率低下的一个重要组成部分。首先,我们表明转化的转移性大鼠胚胎细胞在注入循环系统后24 - 48小时在肺部通过凋亡发生死亡。其次,我们表明这些细胞中Bcl - 2的过表达在培养中抑制凋亡,并且在注射后24 - 48小时在体内肺部也赋予对凋亡的抗性。这种凋亡抑制导致明显更多的宏观转移灶。第三,在肺部注射后24小时,低转移性细胞系与高转移性细胞系的凋亡程度比较显示,低转移性细胞系的凋亡更多。这些结果表明,在肺部血行播散后24 - 48小时发生的凋亡是转移效率低下的一个重要决定因素。虽然先前的研究表明培养中的凋亡与体内转移之间存在关联,但本研究表明体内凋亡与体内转移减少相对应。

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