睡眠不足会增强大脑中的淀粉样蛋白β肽、p-tau和血清素:用淀粉样蛋白-β肽、p-tau和5-羟色胺的单克隆抗体纳米线递送脑活素的神经保护作用。

International review of neurobiology Pub Date : 2023-01-01 Epub Date: 2023-09-22 DOI:10.1016/bs.irn.2023.05.009
Aruna Sharma, Lianyuan Feng, Dafin F Muresanu, Z Ryan Tian, José Vicente Lafuente, Anca D Buzoianu, Ala Nozari, Igor Bryukhovetskiy, Igor Manzhulo, Lars Wiklund, Hari Shanker Sharma
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引用次数: 0

摘要

在作战、情报收集或维和行动期间,睡眠不足在军队中相当常见。即使是一个晚上的睡眠不足也会导致淀粉样蛋白β肽负荷的积累,这将导致阿尔茨海默病多年来的沉淀。因此,需要努力减缓或中和淀粉样蛋白β肽(AβP)和相关阿尔茨海默病脑病理的积累,包括脑液环境中的磷酸化tau(P-tau)。睡眠不足还会改变大脑微环境中的血清素(5-羟色胺)代谢,并损害几种神经营养因子的上调。因此,在睡眠剥夺中阻断或中和AβP、P-tau和血清素可能会减轻大脑病理。在这项研究中,使用脑溶素的纳米递送来检验这一假设。脑溶素是几种神经营养因子和活性肽片段的平衡组成,以及抗aβP、对氨基甲酸和5-羟色胺(5-羟色胺,5-HT)的单克隆抗体。我们的观察结果表明,在纳米递送脑活素以及针对AβP、P-tau和5-HT的单克隆抗体后,睡眠剥夺诱导的病理生理学显著降低,这在以前没有报道。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Sleep deprivation enhances amyloid beta peptide, p-tau and serotonin in the brain: Neuroprotective effects of nanowired delivery of cerebrolysin with monoclonal antibodies to amyloid beta peptide, p-tau and serotonin.

Sleep deprivation is quite frequent in military during combat, intelligence gathering or peacekeeping operations. Even one night of sleep deprivation leads to accumulation of amyloid beta peptide burden that would lead to precipitation of Alzheimer's disease over the years. Thus, efforts are needed to slow down or neutralize accumulation of amyloid beta peptide (AβP) and associated Alzheimer's disease brain pathology including phosphorylated tau (p-tau) within the brain fluid environment. Sleep deprivation also alters serotonin (5-hydroxytryptamine) metabolism in the brain microenvironment and impair upregulation of several neurotrophic factors. Thus, blockade or neutralization of AβP, p-tau and serotonin in sleep deprivation may attenuate brain pathology. In this investigation this hypothesis is examined using nanodelivery of cerebrolysin- a balanced composition of several neurotrophic factors and active peptide fragments together with monoclonal antibodies against AβP, p-tau and serotonin (5-hydroxytryptamine, 5-HT). Our observations suggest that sleep deprivation induced pathophysiology is significantly reduced following nanodelivery of cerebrolysin together with monoclonal antibodies to AβP, p-tau and 5-HT, not reported earlier.

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