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Perineuronal nets potentially protect against oxidative stress.

机译:神经周围神经网可能会抵抗氧化应激。

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A specialized form of extracellular matrix (ECM) termed perineuronal nets (PNs) consisting of large aggregating chondroitin sulfate proteoglycans (CSPGs), with hyaluronan and tenascin as main components, surrounds subpopulations of neurons. The glycosaminoglycan components of perineuronal nets form highly charged structures in the direct microenvironment of neurons and thus might be involved in local ion homeostasis. The polyanionic character suggests that perineuronal nets also potentially contribute to reduce the local oxidative potential in the neuronal microenvironment by scavenging and binding redox-active iron, thus providing some neuroprotection to net-associated neurons. Here, we show that neurons ensheathed by a perineuronal net in the human cerebral cortex are less frequently affected by lipofuscin accumulation than neurons without a net both in normal-aged brain and Alzheimer's disease (AD). As lipofuscin is an intralysosomal pigment composed of cross-linked proteins and lipids generated by iron-catalyzed oxidative processes, the present results suggest a neuroprotective function of perineuronal nets against oxidative stress, potentially involved in neurodegeneration.
机译:一种特殊形式的细胞外基质(ECM),称为神经外神经网络(PNs),由大量聚集的硫酸软骨素蛋白聚糖(CSPG)组成,透明质酸和肌腱蛋白是主要成分,围绕着神经元亚群。神经周围神经网络的糖胺聚糖成分在神经元的直接微环境中形成高度带电的结构,因此可能参与局部离子稳态。聚阴离子特性表明,神经周围神经网还可以通过清除和结合氧化还原活性铁,从而潜在地降低神经元微环境中的局部氧化电位,从而为与网络相关的神经元提供一些神经保护作用。在这里,我们显示,在正常年龄的大脑和阿尔茨海默氏病(AD)中,人脑皮层中神经周围神经网络包被的神经元受脂褐素的影响要比没有网的神经元受脂褐素的影响少。由于脂褐素是一种溶酶体色素,由交联的蛋白质和铁催化的氧化过程产生的脂质组成,因此本研究结果表明神经周神经网对氧化应激的神经保护功能,可能参与神经变性。

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