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Disturbed Red Blood Cell Structure and Function: An Exploration of the Role of Red Blood Cells in Neurodegeneration

机译:红细胞结构和功能紊乱:红细胞在神经变性中的作用探讨

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The structure of red blood cells is affected by many inborn and acquired factors, but in most cases this does not seem to affect their function or survival in physiological conditions. Often, functional deficits become apparent only when they are subjected to biochemical or mechanical stress in vitro, or to pathological conditions in vivo. Our data on the misshapen red blood cells of patients with neuroacanthocytosis illustrate this general mechanism: an abnormal morphology is associated with an increase in the susceptibility of red blood cells to osmotic and mechanical stress, and alters their rheological properties. The underlying mutations may not only affect red cell function, but also render neurons in specific brain areas more susceptible to a concomitant reduction in oxygen supply. Through this mechanism, an increased susceptibility of already compromised red blood cells to physiological stress conditions may constitute an additional risk factor in vulnerable individuals. Also, susceptibility may be induced or enhanced by systemic pathological conditions such as inflammation. An exploration of the literature suggests that disturbed red blood cell function may play a role in the pathophysiology of various neurodegenerative diseases. Therefore, interventions that reduce the susceptibility of red blood cells to physiological and pathological stress may reduce the extent or progress of neurodegeneration.
机译:红细胞的结构受许多先天和后天因素的影响,但是在大多数情况下,这似乎并不影响它们在生理条件下的功能或生存。通常,功能缺陷只有在体外受到生物化学或机械应力或在体内经受病理条件时才变得明显。我们关于神经棘皮细胞增多症患者畸形红细胞的数据说明了这种一般机制:异常形态与红细胞对渗透压和机械应力的敏感性增加有关,并改变了它们的流变性。潜在的突变不仅可能影响红细胞功能,而且还会使特定大脑区域的神经元更容易伴随氧气供应的减少。通过这种机制,已经受损的红细胞对生理应激条件的敏感性增加,可能构成易感人群的另一个危险因素。另外,易感性可由全身性病理状况例如炎症诱导或增强。文献研究表明,红细胞功能紊乱可能在各种神经退行性疾病的病理生理中起作用。因此,减少红细胞对生理和病理应激敏感性的干预措施可能会减少神经变性的程度或进展。

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