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Nonlinear Biomechanical Characteristics of Deep Deformation of Native RBC Membranes in Normal State and under Modifier Action

机译:正常状态和修饰剂作用下天然红细胞膜深层变形的非线性生物力学特征

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摘要

The ability of membranes of native human red blood cells (RBCs) to bend into the cell to a depth comparable in size with physiological deformations was evaluated. For this, the methods of atomic force microscopy and atomic force spectroscopy were used. Nonlinear patterns of deep deformation (up to 600 nm) of RBC membranes were studied in normal state and under the action of modifiers: fixator (glutaraldehyde), natural oxidant (hemin), and exogenous intoxicator (zinc ions), in vitro. The experimental dependences of membrane bending for control RBC (normal) were approximated by the Hertz model to a depth up to 600 nm. The glutaraldehyde fixator and modifiers increased the absolute value of Young's modulus of membranes and changed the experimental dependences of probe indentation into the cells. Up to some depth hHz, the force curves were approximated by the Hertz model, and for deeper indentations h > hHz, the degree of the polynomial function was changed, the membrane stiffness increased, and the pattern of indentation became another and did not obey the Hertz model. Quantitative characteristics of nonlinear experimental dependences were calculated for deep bending of RBC membranes by approximating them by the degree polynomial function.
机译:评价了天然人红细胞(RBC)的膜弯曲到细胞中的深度与生理变形大小可比的深度的能力。为此,使用了原子力显微镜和原子力光谱法。在正常状态下,在改性剂:固定剂(戊二醛),天然氧化剂(血红素)和外源性中毒剂(锌离子)的作用下,研究了RBC膜的深度变形(高达600 nm)的非线性模式。膜弯曲对对照RBC(正常)的实验依赖性通过Hertz模型近似到了600 nm的深度。戊二醛固定剂和改性剂增加了膜的杨氏模量的绝对值,并改变了探针压入细胞的实验依赖性。在一定的深度hHz处,力曲线通过Hertz模型进行近似,对于更深的压痕h> hHz,多项式函数的程度发生了变化,膜的刚度增加,压痕的模式变为另一个且不服从赫兹模型。通过对RBC膜的深度多项式函数进行近似计算,得出非线性实验相关性的定量特征。

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