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Single-cell evaluation of red blood cell bio-mechanical and nano-structural alterations upon chemically induced oxidative stress

机译:化学诱导的氧化应激对红细胞生物力学和纳米结构改变的单细胞评估

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摘要

Erythroid cells, specifically red blood cells (RBCs), are constantly exposed to highly reactive radicals during cellular gaseous exchange. Such exposure often exceeds the cells' innate anti-oxidant defense systems, leading to progressive damage and eventual senescence. One of the contributing factors to this process are alterations to hemoglobin conformation and globin binding to red cell cytoskeleton. However, in addition to the aforementioned changes, it is possible that oxidative damage induces critical changes to the erythrocyte cytoskeleton and corresponding bio-mechanical and nano-structural properties of the red cell membrane. To quantitatively characterize how oxidative damage accounts for such changes, we employed single-cell manipulation techniques such as micropipette aspiration and atomic force microscopy (AFM) on RBCs. These investigations demonstrated visible morphological changes upon chemically induced oxidative damage (using hydrogen peroxide, diamide, primaquine bisphosphate and cumene hydroperoxide). Our results provide previously unavailable observations on remarkable changes in red cell cytoskeletal architecture and membrane stiffness due to oxidative damage. Furthermore, we also demonstrate that a pathogen that infects human blood cells, Plasmodium falciparum was unable to penetrate through the oxidant-exposed RBCs that have damaged cytoskeleton and stiffer membranes. This indicates the importance of bio-physical factors pertinent to aged RBCs and it's relevance to malaria infectivity.
机译:红细胞,特别是红细胞(RBC),在细胞气体交换过程中不断暴露于高反应性自由基。这种暴露通常会超过细胞固有的抗氧化防御系统,导致进行性损伤和最终衰老。促成这一过程的因素之一是血红蛋白构象的改变和球蛋白与红细胞骨架的结合。但是,除了上述变化外,氧化损伤还可能引起红细胞细胞骨架的关键变化以及红细胞膜的相应生物力学和纳米结构特性。为了定量表征氧化损伤是如何引起这种变化的,我们采用了单细胞操作技术,例如在RBC上使用微量移液器抽吸和原子力显微镜(AFM)。这些研究表明了化学诱导的氧化损伤(使用过氧化氢,二酰胺,伯氨喹双磷酸酯和氢过氧化枯烯)后可见的形态变化。我们的结果提供了以前无法获得的关于氧化损伤导致的红细胞细胞骨架结构和膜僵硬度显着变化的观察结果。此外,我们还证明了一种感染人类血细胞的病原体,恶性疟原虫无法穿透暴露于氧化剂的RBCs,RBCs破坏了细胞骨架,使膜变硬。这表明了与老年RBC有关的生物物理因素的重要性及其与疟疾感染性的关系。

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