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用于研究疟原虫感染的红细胞的生物光子学技术。

Biophotonic techniques for the study of malaria-infected red blood cells.

机构信息

Department of Chemical Engineering and Biotechnology, University of Cambridge, Cambridge, UK.

出版信息

Med Biol Eng Comput. 2010 Oct;48(10):1055-63. doi: 10.1007/s11517-010-0668-0. Epub 2010 Jul 27.

Abstract

Investigation of the homeostasis of red blood cells upon infection by Plasmodium falciparum poses complex experimental challenges. Changes in red cell shape, volume, protein, and ion balance are difficult to quantify. In this article, we review a wide range of optical techniques for quantitative measurements of critical homeostatic parameters in malaria-infected red blood cells. Fluorescence lifetime imaging and tomographic phase microscopy, quantitative deconvolution microscopy, and X-ray microanalysis, are used to measure haemoglobin concentration, cell volume, and ion contents. Atomic force microscopy is briefly reviewed in the context of these optical methodologies. We also describe how optical tweezers and optical stretchers can be usefully applied to empower basic malaria research to yield diagnostic information on cell compliance changes upon malaria infection. The combined application of these techniques sheds new light on the detailed mechanisms of malaria infection providing potential for new diagnostic or therapeutic approaches.

摘要

研究疟原虫感染对红细胞内稳态的影响面临着复杂的实验挑战。红细胞形状、体积、蛋白质和离子平衡的变化难以定量。在本文中,我们综述了广泛的光学技术,用于定量测量疟原虫感染红细胞的关键内稳态参数。荧光寿命成像和断层相位显微镜、定量反卷积显微镜和 X 射线微分析用于测量血红蛋白浓度、细胞体积和离子含量。原子力显微镜在这些光学方法的背景下进行了简要回顾。我们还描述了如何将光学镊子和光学拉伸器有效地应用于增强基础疟疾研究,从而在疟疾感染时提供有关细胞顺应性变化的诊断信息。这些技术的联合应用为疟疾感染的详细机制提供了新的认识,并为新的诊断或治疗方法提供了潜力。

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