Cellular modes of adaptation to environmental changes

W. Huckle
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Abstract

Eukaryotic cells are remarkably adaptable entities. Whether embedded in solid tissues or freely suspended in blood or other fluids, cells principally exist in an aqueous environment but maintain a hydrophobic barrier, the plasma membrane, across which changes in the environment are detected. Utilizing specialized macromolecular components, cells can sense changes in temperature, hydrostatic pressure, oxygen tension, shear, shape, osmolarity, pH, electrical potential, electromagnetic radiation, and the concentrations of specific chemical compounds. Modes of response are equally varied, ranging from rapid secretion of stored substances to irreversible functional differentiation to self-destruction. Recent research has elucidated many of the enzymatic and genetic programs that accomplish these adaptations and suggests novel targets for therapeutic intervention.
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适应环境变化的细胞模式
真核细胞是适应性很强的实体。无论是嵌入固体组织中,还是自由悬浮在血液或其他液体中,细胞主要存在于水环境中,但保持着疏水屏障,即质膜,通过质膜检测环境的变化。利用特殊的大分子成分,细胞可以感知温度、静水压力、氧张力、剪切、形状、渗透压、pH值、电势、电磁辐射和特定化合物浓度的变化。反应方式同样多种多样,从储存物质的快速分泌到不可逆的功能分化,再到自我毁灭。最近的研究已经阐明了许多完成这些适应的酶和遗传程序,并提出了治疗干预的新靶点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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