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Changes in red blood cell membrane structure in type 2 diabetes: a scanning electron and atomic force microscopy study

机译:2型糖尿病患者红细胞膜结构的变化:扫描电子和原子力显微镜研究

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Red blood cells (RBCs) are highly deformable and possess a robust membrane that can withstand shear force. Previous research showed that in diabetic patients, there is a changed RBC ultrastructure, where these cells are elongated and twist around spontaneously formed fibrin fibers. These changes may impact erythrocyte function. Ultrastructural analysis of RBCs in inflammatory and degenerative diseases can no longer be ignored and should form a fundamental research tool in clinical studies. Consequently, we investigated the membrane roughness and ultrastructural changes in type 2 diabetes. Atomic force microscopy (AFM) was used to study membrane roughness and we correlate this with scanning electron microscopy (SEM) to compare results of both the techniques with the RBCs of healthy individuals. We show that the combined AFM and SEM analyses of RBCs give valuable information about the disease status of patients with diabetes. Effectiveness of treatment regimes on the integrity, cell shape and roughness of RBCs may be tracked, as this cell’s health status is crucial to the overall wellness of the diabetic patient.
机译:红细胞(RBC)高度易变形,并具有坚固的膜,可以承受剪切力。先前的研究表明,在糖尿病患者中,红细胞的超微结构发生了变化,这些细胞被拉长并在自发形成的纤维蛋白纤维周围扭曲。这些变化可能会影响红细胞功能。在炎症和退行性疾病中,红细胞的超微结构分析不再被忽略,应该成为临床研究中的基础研究工具。因此,我们调查了2型糖尿病的膜粗糙度和超微结构变化。原子力显微镜(AFM)用于研究膜的粗糙度,我们将其与扫描电子显微镜(SEM)进行关联,以比较两种技术与健康个体的RBC的结果。我们表明,结合红细胞的AFM和SEM分析可提供有关糖尿病患者疾病状况的宝贵信息。由于红细胞的健康状况对于糖尿病患者的整体健康至关重要,因此可以追踪治疗方案对红细胞完整性,细胞形状和粗糙度的有效性。

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