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Continuous force-displacement relationships for the human red blood cell at different erythrocytic developmental stages of Plasmodium falciparum malaria parasite

机译:在疟原虫疟原虫不同红细胞发育阶段的人红细胞连续力 - 位移关系

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Prior work involving either aspiration of infected cells into micropipette under suction pressure or deformation in laminar shear flow revealed that the malaria parasite Plasmodium (P.) falciparum could result in significant stiffening of infected human red blood cells (RBCs). In this paper, we present optical tweezers studies of progressive changes to nonlinear mechanical response of infected RBCs at different developmental stages of P. falciparum. From early ring stage to late trophozoite and schizont stages, up to an order of magnitude increase in shear modulus was found under controlled mechanical loading by combining experiments with three-dimensional computational simulations. These results provide novel approaches to study changes in mechanical deformability in the advanced stages of parasite development in the erythrocyte, and suggest a significantly greater stiffening of the red blood cell due to P. falciparum invasion than that considered from previous studies.
机译:在流动压力下涉及感染细胞的吸入或层状剪切流动变形的前后工作表明,疟疾寄生虫疟原虫(P.)恶性疟原虫可能导致感染的人红细胞(RBC)的显着加强。 本文介绍了P. Falciparum的不同发育阶段对感染RBC的非线性机械响应的光学镊子研究。 从早期环阶段到晚期滋磨和Schizont阶段,通过将实验与三维计算模拟的实验相结合,在受控机械加载下发现剪切模量的幅度增加顺序。 这些结果提供了新的方法来研究红细胞在寄生虫发育的先进阶段的机械变形性变化的方法,并表明由于P. falciparum入侵的比来自先前研究的侵袭性的红细胞增强。

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