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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:人红细胞在恶性疟原虫疟疾寄生虫不同促红细胞发育阶段的持续力-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:先前的工作涉及在吸入压力下将感染细胞吸入微量移液管或层流剪切流中变形,这表明疟原虫恶性疟原虫(P.)可能导致感染的人类红细胞(RBC)明显变硬。在本文中,我们介绍了用光镊研究恶性疟原虫不同发育阶段感染红细胞的非线性机械响应的逐步变化。通过将实验与三维计算仿真相结合,在早期的环生阶段至次要的次滋养体和裂殖体阶段,在受控的机械载荷下,剪切模量提高了一个数量级。这些结果提供了新颖的方法来研究红细胞中寄生虫发育晚期机械变形能力的变化,并且表明恶性疟原虫侵袭引起的红细胞硬化明显大于以前的研究。

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