由分子氧的光激发引起的细胞悬浮液和蛋白质溶液的水相变化(到低水平激光辐射的生物作用机制)

S. Zakharov, A. Ivanov
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引用次数: 0

摘要

研究了由人红细胞悬浮液和血清白蛋白溶液中单线态氧直接光生引起的温度依赖性瞬态过程。这一过程表现为红细胞变形系数和细胞外介质和蛋白溶液折射率的温度依赖性的异常跳跃。在异常跳跃的温度区域,细胞和蛋白质转移到活性较低的亚稳态,但它们可以被等温光再激活。同时,水相的可逆重排发生在细胞和蛋白质表面附近,伴随着延伸的日冕(水凝胶)的形成。瞬时过程可以解释为红细胞膜的相变和蛋白质的构象转变。发现红细胞和白蛋白通过水凝胶相互作用(水构象相互作用)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Changes in the aqueous phase of cell suspensions and protein solutions induced by a photoexitation of the molecular oxygen (to mechanisms of biological action of low level laser radiation )
Temperature-dependent transient processes initiated by a direct photogeneration of singlet oxygen in suspensions of human erythrocytes and solutions of serum albumin are studied. The processes appear as anomalous jumps in the temperature dependences of the deformability coefficient of erythrocytes and the refractive index of the extracellular medium and protein solution. In the temperature regions of anomalous jumps, cells and proteins transfer to a metastable state of a lower activity, but they can be isothermally photoreactivated. Simultaneously, a reversible rearrangement of the aqueous phase occurs near the cell and protein surfaces, accompanied by the formation of an extended corona (hydrogel). The transient processes are interpreted as phase transitions in the membrane of erythrocytes and conformation transitions in proteins. The interaction between erythrocytes and albumin via hydrogel is discovered (hydro-conformational interaction).
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