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热疗对不同来源内皮细胞的细胞存活及蛋白质合成模式的影响。

Effects of hyperthermia on cell survival and patterns of protein synthesis in endothelial cells from different origins.

作者信息

Ketis N V, Hoover R L, Karnovsky M J

机构信息

Department of Pathology, Harvard Medical School, Boston, Massachusetts 02115.

出版信息

Cancer Res. 1988 Apr 15;48(8):2101-6.

PMID:3349481
Abstract

Thermotolerance, transient resistance to heat induced by heat itself, is generally thought to be linked to the accumulation of heat-shock proteins in eukaryotic cells. The induction of thermotolerance and the synthesis of heat-shock proteins in primary and passage cultures of bovine aortic endothelium, passage cultures of bovine brain capillaries, and passage cultures of rat epididymal capillaries were examined. Primary and passage cultures of bovine aortic endothelial cells readily acquired thermotolerance; however, passage cultures of rat epididymal capillary cells and bovine brain capillary cells were very heat sensitive. In all endothelial cell types examined except rat epididymal capillary cells, the levels of HSP71, the most inducible of the HSP70 family, correlated well with thermotolerance. With prolonged passage, rat epididymal capillary cells and bovine brain capillary cells lost their ability to acquire heat resistance. Endothelial cells from different origins (aortic endothelium versus capillary endothelium) but from the same species and about the same passage number had a notably different response in terms of thermotolerance and synthesis of proteins after exposure to hyperthermia. The results of this study suggest that, while the expression of HSP71 may be a good indicator of heat resistance, the reverse is not necessarily true. Furthermore, the data show that endothelial cells from different origins are dissimilar in their response to hyperthermia.

摘要

热耐受是指由热本身诱导产生的对热的短暂抗性,一般认为它与真核细胞中热休克蛋白的积累有关。我们研究了牛主动脉内皮细胞原代培养物和传代培养物、牛脑毛细血管传代培养物以及大鼠附睾毛细血管传代培养物中热耐受的诱导情况和热休克蛋白的合成情况。牛主动脉内皮细胞原代培养物和传代培养物很容易获得热耐受;然而,大鼠附睾毛细血管细胞和牛脑毛细血管细胞的传代培养物对热非常敏感。在除大鼠附睾毛细血管细胞外的所有检测内皮细胞类型中,HSP71(HSP70家族中最易诱导产生的成员)的水平与热耐受密切相关。随着传代时间延长,大鼠附睾毛细血管细胞和牛脑毛细血管细胞失去了获得耐热性的能力。来自同一物种且传代数相近但起源不同(主动脉内皮与毛细血管内皮)的内皮细胞在热耐受和热暴露后蛋白质合成方面有显著不同的反应。本研究结果表明,虽然HSP71的表达可能是耐热性的良好指标,但反之则不一定成立。此外,数据显示来自不同起源的内皮细胞对热的反应不同。

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