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A study of red blood cell deformability in diabetic retinopathy using optical tweezers

机译:用光镊研究糖尿病视网膜病变中红细胞的变形性

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Diabetic retinopathy (DR) is a microvascular complication of diabetes mellitus (DM) in which high blood sugar levels cause swelling, leaking and occlusions in the blood vessels of the retina, often resulting in a loss of sight. The microvascular system requires red blood cells (RBCs) to undergo significant cellular deformation in order to pass through vessels whose diameters are significantly smaller than their own. There is evidence to suggest that DM impairs the deformability of RBCs, and this loss of deformability has been associated with diabetic kidney disease (or nephropathy) - another microvascular complication of DM. However, it remains unclear whether reduced deformability of RBCs correlates with the presence of DR,. Here we present an investigation into the deformability of RBCs in patients with diabetic retinopathy using optical tweezers. To extract a value for the deformability of RBCs we use a dual-trap optical tweezers set-up to stretch individual RBCs. RBCs are trapped directly (i.e. without micro-bead handles), so rotate to assume a 'side-on' orientation. Video microscopy is used to record the deformation events, and shape analysis software is used to determine parameters such as initial and maximum RBC length, allowing us to calculate the deformability for each RBC. A small decrease in deformability of diabetes cells subject to this stretching protocol is observed when compared to control cells. We also report on initial results on three dimensional imaging of individual RBCs using defocussing microscopy.
机译:糖尿病性视网膜病(DR)是糖尿病(DM)的微血管并发症,其中高血糖水平导致视网膜血管肿胀,渗漏和阻塞,通常导致视力丧失。微血管系统需要红细胞(RBC)经历明显的细胞变形,才能通过直径明显小于其自身直径的血管。有证据表明,DM损害了RBC的变形能力,这种变形能力的丧失与糖尿病性肾脏疾病(或肾病)有关-DM的另一种微血管并发症。然而,尚不清楚RBC的变形能力降低是否与DR的存在相关。在这里,我们对使用光学镊子对糖尿病性视网膜病变患者的红细胞的可变形性进行调查。要提取RBC的可变形性值,我们使用双阱光镊设置来拉伸单个RBC。红细胞被直接捕获(即没有微珠手柄),因此旋转以呈现``侧向''方向。使用视频显微镜记录变形事件,使用形状分析软件确定诸如初始和最大RBC长度之类的参数,从而使我们能够计算每个RBC的变形能力。当与对照细胞相比时,观察到经受该拉伸方案的糖尿病细胞的可变形性小幅下降。我们还报告了使用散焦显微镜对单个RBC进行三维成像的初步结果。

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