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首页> 外文期刊>The Analyst: The Analytical Journal of the Royal Society of Chemistry: A Monthly International Publication Dealing with All Branches of Analytical Chemistry >In situ single molecule detection of insulin receptors on erythrocytes from a type 1 diabetes ketoacidosis patient by atomic force microscopy
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In situ single molecule detection of insulin receptors on erythrocytes from a type 1 diabetes ketoacidosis patient by atomic force microscopy

机译:原子力显微镜原位检测1型糖尿病酮症酸中毒患者红细胞胰岛素受体

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摘要

Type 1 diabetes is an insulin-dependent metabolic disorder always associated with ketoacidosis and a high morbidity rate in teenagers. The in situ single molecule detection of insulin receptors on healthy and diseased erythrocytes is helpful to understand the pathomechanism of type 1 diabetes ketoacidosis (T1-DKA), which would also benefit the diagnosis and treatment of T1-DKA. Here, we demonstrated, for the first time, the single molecule interaction between insulin and insulin receptor on erythrocytes from a healthy volunteer and a T1-DKA patient using high sensitivity atomic force microscopy (AFM) in PBS solution. The single molecule force results demonstrated the decreased binding force and binding probability between insulin and insulin receptor on T1-DKA erythrocytes, implying the deficit of insulin receptor functions in T1-DKA. The binding kinetic parameters calculated from dynamic force spectroscopy indicated that the insulin-insulin receptor complexes on T1-DKA erythrocytes were less stable than those from healthy volunteer. Using high resolution AFM imaging, a decreased roughness was found both in intact T1-DKA erythrocytes and in the purified membrane of T1-DKA erythrocytes, and an increased stiffness was also found in T1-DKA erythrocytes. Moreover, AFM, which was used to investigate the single molecule interactions between insulin-insulin receptor, cell surface ultrastructure and stiffness in healthy and diseased erythrocytes, was expected to develop into a potential nanotool for pathomechanism studies of clinical samples at the nanoscale.
机译:1型糖尿病是一种胰岛素依赖型代谢疾病,通常与酮症酸中毒和青少年的高发病率相关。健康和患病的红细胞上胰岛素受体的原位单分子检测有助于了解1型糖尿病酮症酸中毒(T1-DKA)的发病机制,这也将有助于T1-DKA的诊断和治疗。在这里,我们首次使用PBS溶液中的高灵敏度原子力显微镜(AFM)展示了来自健康志愿者和T1-DKA患者的红细胞上胰岛素与胰岛素受体之间的单分子相互作用。单分子力结果表明,胰岛素和胰岛素受体对T1-DKA红细胞的结合力和结合概率降低,这暗示T1-DKA中胰岛素受体功能的缺失。由动态力谱计算的结合动力学参数表明,T1-DKA红细胞上的胰岛素-胰岛素受体复合物比健康志愿者的稳定性差。使用高分辨率AFM成像,在完整的T1-DKA红细胞和纯化的T1-DKA红细胞膜中均发现粗糙度降低,并且在T1-DKA红细胞中也发现硬度增加。此外,用于研究健康和患病红细胞中胰岛素-胰岛素受体,细胞表面超微结构和硬度之间的单分子相互作用的原子力显微镜有望发展成为用于纳米级临床样品病理机理研究的潜在纳米工具。

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