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Cardiorenal Metabolic Syndrome and Diabetic Cognopathy

机译:心肾代谢综合征与糖尿病性肾病

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>The prevalence of the cardiorenal metabolic syndrome (CRS) is increasing in parallel with obesity, type 2 diabetes mellitus, Alzheimer's disease, and other forms of dementia. Along with metabolic, inflammatory, and immunological abnormalities, there is maladaptive structural remodeling of the heart, kidney, and brain. The term ‘diabetic cognopathy' (DC) may be used when discussing functional and structural changes in the brain of the diabetic patient. DC likely represents an advanced form of these changes in the brain that evolve with increasing duration of the CRS and subsequent clinical diabetes. We posit that DC develops due to a convergence of aging, genetic and lifestyle abnormalities (overnutrition and lack of exercise), which result in multiple injurious metabolic and immunologic toxicities such as dysfunctional immune responses, oxidative stress, inflammation, insulin resistance, and dysglycemia (systemically and in the brain). These converging abnormalities may lead to endothelial blood-brain barrier tight junction/adherens junction (TJ/AJ) complex remodeling and microglia activation, which may result in neurodegeneration, impaired cognition, and dementia. Herein, we describe the brain ultrastructural changes evolving from a normal state to maladaptive remodeling in rodent models of CRS including microglia activation/polarization and attenuation and/or loss of the TJ/AJ complexes, pericytes and astrocytes of the neurovascular unit. Further, we discuss the potential relationship between these structural changes and the development of DC, potential therapeutic strategies, and future directions.
机译:>与肥胖,2型糖尿病,阿尔茨海默氏病和其他形式的痴呆症同时发生的心肾代谢综合征(CRS)的患病率正在上升。除代谢,炎性和免疫学异常外,心脏,肾脏和大脑还存在适应不良的结构重塑。当讨论糖尿病患者大脑的功能和结构变化时,可以使用术语“糖尿病性眼病”(DC)。 DC可能代表了大脑中这些变化的高级形式,这些变化随着CRS持续时间的延长和随后的临床糖尿病的发展而发展。我们假设DC的产生是由于衰老,遗传和生活方式异常(营养过剩和缺乏运动)的融合,导致多种伤害性的新陈代谢和免疫毒性,例如免疫功能异常,氧化应激,炎症,胰岛素抵抗和血糖异常(系统地和在大脑中)。这些会聚的异常可能导致内皮血脑屏障紧密连接/粘附连接(TJ / AJ)复合物重塑和小胶质细胞活化,可能导致神经退行性病变,认知功能减退和痴呆。在本文中,我们描述了在CRS啮齿动物模型中从正常状态演变为适应不良的重塑的大脑超微结构变化,包括小胶质细胞激活/极化和TJ / AJ复合物,周细胞和神经血管单位星形胶质细胞的衰减和/或丢失。此外,我们讨论了这些结构变化与DC的发展之间的潜在关系,潜在的治疗策略以及未来的方向。

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