Studies on cell surface conformation following injury. II. Scanning and transmission electron microscopy of cell surface changes following anoxic injury in Ehrlich ascites tumor cells.

Virchows Archiv. B, Cell pathology Pub Date : 1979-02-06
B F Trump, A Penttila, I K Berezesky
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Abstract

Exposure of Ehrlich ascites tumor cells to anoxia resulted in rapid and characteristic conformational changes of cell surface topography. Combined scanning and transmission E/M studies revealed rapid alterations including simplification of the cell surface configuration with disappearance of microvilli which were replaced with formation of blebs and recesses at the cell periphery. These surface changes were accompanied by characteristic organelle alterations inside the cells which in this and other cellular systems have been shown to be reversible. Later, the cell surface topography became smoother and monotonic with small blebs and cribriform invaginations in addition to larger eruptions of the cell periphery. Combined transmission E/M studies revealed fragmentation of cellular membrane systems and lysis of organelles indicating the irreversible phase of anoxic injury. The rapid conformational surface changes encountered in Ehrlich ascites tumor cells following anoxia suggest the important role of the plasma membrane and its unfolding as a virtually instantaneous response of the cells to this injury.

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损伤后细胞表面构象的研究。2埃利希腹水肿瘤细胞缺氧损伤后细胞表面变化的扫描电镜观察。
暴露于缺氧的埃利希腹水肿瘤细胞导致细胞表面形貌的快速和特征性构象变化。扫描和透射电镜联合研究显示细胞的快速变化,包括细胞表面结构的简化和微绒毛的消失,取而代之的是细胞周围形成的气泡和凹窝。这些表面变化伴随着细胞内细胞器的特征改变,在这个和其他细胞系统中,这种改变已被证明是可逆的。后来,细胞表面形貌变得光滑单调,除了细胞周围较大的爆发外,还有小水泡和筛网状内陷。联合透射电镜/电镜研究显示,细胞膜系统的断裂和细胞器的裂解表明缺氧损伤的不可逆阶段。缺氧后,在埃利希腹水肿瘤细胞中遇到的快速构象表面变化表明,质膜的重要作用及其展开几乎是细胞对这种损伤的瞬时反应。
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Intermediate filaments in hyaline material in alcoholic liver disease (Mallory bodies) and in cultured hepatoma cells. Shedding of peripheral cytoplasm - a mechanism of liver cell atrophy in human amyloidosis. Ruthenium red binding to cell coat in neoplastic neurogenic cell lines in culture. The effect of DL-2-bromopalmitate on the utilization of palmitic acid by rat granular pneumocytes. Studies on cell surface conformation following injury. II. Scanning and transmission electron microscopy of cell surface changes following anoxic injury in Ehrlich ascites tumor cells.
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