Mechanisms of cognitive dysfunction in CKD

医学 前驱症状 痴呆 单胺类 认知 肾脏疾病 神经科学 认知功能衰退 发病机制 疾病 内科学 生物信息学 精神科 心理学 受体 精神病 血清素 生物
作者
Davide Viggiano,Carsten A. Wagner,Gianvito Martino,Maiken Nedergaard,Carmine Zoccali,Robert J. Unwin,Giovambattista Capasso
出处
期刊:Nature Reviews Nephrology [Nature Portfolio]
卷期号:16 (8): 452-469 被引量:297
标识
DOI:10.1038/s41581-020-0266-9
摘要

Cognitive impairment is an increasingly recognized major cause of chronic disability and is commonly found in patients with chronic kidney disease (CKD). Knowledge of the relationship between kidney dysfunction and impaired cognition may improve our understanding of other forms of cognitive dysfunction. Patients with CKD are at an increased risk (compared with the general population) of both dementia and its prodrome, mild cognitive impairment (MCI), which are characterized by deficits in executive functions, memory and attention. Brain imaging in patients with CKD has revealed damage to white matter in the prefrontal cortex and, in animal models, in the subcortical monoaminergic and cholinergic systems, accompanied by widespread macrovascular and microvascular damage. Unfortunately, current interventions that target cardiovascular risk factors (such as anti-hypertensive drugs, anti-platelet agents and statins) seem to have little or no effect on CKD-associated MCI, suggesting that the accumulation of uraemic neurotoxins may be more important than disturbed haemodynamic factors or lipid metabolism in MCI pathogenesis. Experimental models show that the brain monoaminergic system is susceptible to uraemic neurotoxins and that this system is responsible for the altered sleep pattern commonly observed in patients with CKD. Neural progenitor cells and the glymphatic system, which are important in Alzheimer disease pathogenesis, may also be involved in CKD-associated MCI. More detailed study of CKD-associated MCI is needed to fully understand its clinical relevance, underlying pathophysiology, possible means of early diagnosis and prevention, and whether there may be novel approaches and potential therapies with wider application to this and other forms of cognitive decline. Capasso and colleagues provide an overview of cognitive dysfunction resulting from CKD, including mild cognitive impairment and dementia. CKD-associated cognitive impairment seems to be caused by the effects of uraemic neurotoxins and kidney neurotrophins on specific neurons and regions of the brain.
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