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Biomechanics of Ex Vivo-Generated Red Blood Cells Investigated by Optical Tweezers and Digital Holographic Microscopy

机译:通过光学镊子和数字全息显微镜研究的前体内生物力学的生物力学

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摘要

Ex vivo-generated red blood cells are a promising resource for future safe blood products, manufactured independently of voluntary blood donations. The physiological process of terminal maturation from spheroid reticulocytes to biconcave erythrocytes has not been accomplished yet. A better biomechanical characterization of cultured red blood cells (cRBCs) will be of utmost interest for manufacturer approval and therapeutic application. Here, we introduce a novel optical tweezer (OT) approach to measure the deformation and elasticity of single cells trapped away from the coverslip. To investigate membrane properties dependent on membrane lipid content, two culture conditions of cRBCs were investigated, cRBCPlasma with plasma and cRBCHPL supplemented with human platelet lysate. Biomechanical characterization of cells under optical forces proves the similar features of native RBCs and cRBCHPL, and different characteristics for cRBCPlasma. To confirm these results, we also applied a second technique, digital holographic microscopy (DHM), for cells laid on the surface. OT and DHM provided related results in terms of cell deformation and membrane fluctuations, allowing a reliable discrimination between cultured and native red blood cells. The two techniques are compared and discussed in terms of application and complementarity.
机译:离体生成的红细胞是未来安全血液产品的有希望的资源,独立于自愿献血制造。从球状网状细胞到双旋转红细胞的末端成熟的生理过程尚未完成。培养的红细胞(CRBC)的更好生物力学表征将对制造商批准和治疗申请具有极大的利益。在这里,我们介绍一种新型光学镊子(OT)方法来测量捕获远离盖玻片的单个细胞的变形和弹性。为了研究依赖于膜脂质含量的膜特性,研究了三种CRBC的培养条件,CRBCPLASMA具有血浆和CRBCHPL补充有人血小板裂解物。光力下细胞的生物力学表征证明了天然RBC和CRBCHPL的类似特征,以及CRBCPLASMA的不同特征。为了确认这些结果,我们还应用了第二种技术,数字全息显微镜(DHM),用于铺设在表面上的细胞。 OT和DHM在细胞变形和膜波动方面提供了相关结果,允许培养和天然红细胞之间可靠的歧视。在应用和互补性方面进行比较和讨论这两种技术。

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