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白细胞介素1α作为人胃癌细胞的自分泌生长刺激因子。

Interleukin 1 alpha acts as an autocrine growth stimulator for human gastric carcinoma cells.

作者信息

Ito R, Kitadai Y, Kyo E, Yokozaki H, Yasui W, Yamashita U, Nikai H, Tahara E

机构信息

First Department of Pathology, Hiroshima University School of Medicine, Japan.

出版信息

Cancer Res. 1993 Sep 1;53(17):4102-6.

PMID:8358739
Abstract

The expression and effect of interleukin 1 alpha (IL-1 alpha) were examined in human gastric carcinoma cell lines to determine if IL-1 alpha acts as a growth stimulator for these cells. Six of 8 gastric carcinoma cell lines expressed IL-1 alpha mRNA at various levels. Among them, TMK-1 and MKN-7 cells secreted IL-1 alpha into the culture fluid, in an especially large amount by MKN-7 cells. Scatchard plot analysis of IL-1 alpha binding revealed that TMK-1 cells had only one type of high-affinity receptors, whereas MKN-7 cells had high- and low-affinity receptors. Cell growth and DNA synthesis of TMK-1 and MKN-7 cells were stimulated by IL-1 alpha, and those of MKN-7 were inhibited by addition of anti-IL-1 alpha antibody or IL-1 receptor antagonist. The expression of IL-1 alpha mRNA by these cell lines was induced by either IL-1 alpha, epidermal growth factor, or transforming growth factor alpha. On the other hand, IL-1 alpha increased the mRNA expression for transforming growth factor alpha and epidermal growth factor receptor. These findings indicate that IL-1 alpha is an autocrine growth stimulator for gastric carcinoma cells and the interaction with epidermal growth factor/transforming growth factor alpha/receptor system should be involved in the growth modulation by IL-1 alpha.

摘要

检测了白细胞介素1α(IL-1α)在人胃癌细胞系中的表达及作用,以确定IL-1α是否作为这些细胞的生长刺激因子。8种胃癌细胞系中有6种在不同水平表达IL-1α mRNA。其中,TMK-1和MKN-7细胞将IL-1α分泌到培养液中,MKN-7细胞分泌量尤其大。对IL-1α结合的Scatchard图分析显示,TMK-1细胞只有一种高亲和力受体,而MKN-7细胞有高亲和力和低亲和力受体。IL-1α刺激了TMK-1和MKN-7细胞的生长及DNA合成,添加抗IL-1α抗体或IL-1受体拮抗剂可抑制MKN-7细胞的生长及DNA合成。这些细胞系中IL-1α mRNA的表达可被IL-1α、表皮生长因子或转化生长因子α诱导。另一方面,IL-1α增加了转化生长因子α和表皮生长因子受体的mRNA表达。这些发现表明,IL-1α是胃癌细胞的自分泌生长刺激因子,且与表皮生长因子/转化生长因子α/受体系统的相互作用应参与了IL-1α对生长的调节。

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