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Physiological clearance of amyloid-beta by the kidney and its therapeutic potential for Alzheimer’s disease

医学 神经炎症 速尿 星形胶质增生 血脑屏障 神经病理学 发病机制 阿尔茨海默病 内科学 疾病 神经科学 肾脏疾病 病理 中枢神经系统 心理学
作者
Ding‐Yuan Tian,Yuan Cheng,Zhen‐Qian Zhuang,Chen-Yang He,Qianguang Pan,Maozhi Tang,Xuelian Hu,Ying‐Ying Shen,Ye‐Ran Wang,Sihan Chen,Hao‐Lun Sun,Pu‐Yang Sun,Zhongyuan Yu,Dong‐Yu Fan,Xian‐Le Bu,Cheng‐Rong Tan,Gui‐Hua Zeng,Jun Wang,Hongwen Zhao,Yan‐Jiang Wang
出处
期刊:Molecular Psychiatry [Springer Nature]
卷期号:26 (10): 6074-6082 被引量:98
标识
DOI:10.1038/s41380-021-01073-6
摘要

Amyloid-β (Aβ) accumulation in the brain is a pivotal event in the pathogenesis of Alzheimer's disease (AD), and its clearance from the brain is impaired in sporadic AD. Previous studies suggest that approximately half of the Aβ produced in the brain is cleared by transport into the periphery. However, the mechanism and pathophysiological significance of peripheral Aβ clearance remain largely unknown. The kidney is thought to be responsible for Aβ clearance, but direct evidence is lacking. In this study, we investigated the impact of unilateral nephrectomy on the dynamic changes in Aβ in the blood and brain in both humans and animals and on behavioural deficits and AD pathologies in animals. Furthermore, the therapeutic effects of the diuretic furosemide on Aβ clearance via the kidney were assessed. We detected Aβ in the kidneys and urine of both humans and animals and found that the Aβ level in the blood of the renal artery was higher than that in the blood of the renal vein. Unilateral nephrectomy increased brain Aβ deposition; aggravated AD pathologies, including Tau hyperphosphorylation, glial activation, neuroinflammation, and neuronal loss; and aggravated cognitive deficits in APP/PS1 mice. In addition, chronic furosemide treatment reduced blood and brain Aβ levels and attenuated AD pathologies and cognitive deficits in APP/PS1 mice. Our findings demonstrate that the kidney physiologically clears Aβ from the blood, suggesting that facilitation of Aβ clearance via the kidney represents a novel potential therapeutic approach for AD.
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