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Red Blood Cell Stiffness and Adhesion Are Species-Specific Properties Strongly Affected by Temperature and Medium Changes in Single Cell Force Spectroscopy

机译:红细胞刚度和粘附性是受温度和培养基中的单细胞力光谱的温度和中等变化强烈影响的物种特异性特性

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摘要

Besides human red blood cells (RBC), a standard model used in AFM-single cell force spectroscopy (SCFS), little is known about apparent Young’s modulus (Ea) or adhesion of animal RBCs displaying distinct cellular features. To close this knowledge gap, we probed chicken, horse, camel, and human fetal RBCs and compared data with human adults serving as a repository for future studies. Additionally, we assessed how measurements are affected under physiological conditions (species-specific temperature in autologous plasma vs. 25 °C in aqueous NaCl solution). In all RBC types, Ea decreased with increasing temperature irrespective of the suspension medium. In mammalian RBCs, adhesion increased with elevated temperatures and scaled with reported membrane sialic acid concentrations. In chicken only adhesion decreased with higher temperature, which we attribute to the lower AE-1 concentration allowing more membrane undulations. Ea decreased further in plasma at every test temperature, and adhesion was completely abolished, pointing to functional cell enlargement by adsorption of plasma components. This halo elevated RBC size by several hundreds of nanometers, blunted the thermal input, and will affect the coupling of RBCs with the flowing plasma. The study evidences the presence of a RBC surface layer and discusses the tremendous effects when RBCs are probed at physiological conditions.
机译:除了人红细胞(RBC)外,在AFM-单细胞力谱(SCFS)中使用的标准模型,几乎是关于表观杨氏模量(EA)或动物RBC的粘附性,显示出明显的细胞特征。为了结束这种知识差距,我们探测鸡,马,骆驼和人胎儿RBC,并将数据与人类成年人进行比较,作为未来研究的储存库。此外,我们评估了测量如何在生理条件下影响(在NaCl水溶液中自体血浆差的特异性温度vs.25℃)。在所有RBC类型中,由于悬浮介质而言,EA随着温度的增加而降低。在哺乳动物RBC中,粘合力随着温度升高而增加,并用报告的膜唾液酸浓度缩放。在鸡中,只有粘合性降低,温度较高,我们归因于允许更多膜起伏的较低AE-1浓度。 EA在每个测试温度下血浆中进一步降低,并且通过吸附等离子体组分来完全消除粘附性,指向功能性细胞扩大。该光环升高了RBC尺寸几百纳米,钝化热输入,并将影响RBC与流动等离子体的耦合。研究证明了RBC表面层的存在,并在生理条件下探测RBC时讨论巨大效果。

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