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首页> 外文期刊>Redox Biology >Nicotinamide mononucleotide (NMN) supplementation rescues cerebromicrovascular endothelial function and neurovascular coupling responses and improves cognitive function in aged mice
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Nicotinamide mononucleotide (NMN) supplementation rescues cerebromicrovascular endothelial function and neurovascular coupling responses and improves cognitive function in aged mice

机译:烟酰胺单核苷酸(NMN)补充可挽救老年小鼠的脑微血管内皮功能和神经血管偶联反应,并改善认知功能

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Adjustment of cerebral blood flow (CBF) to neuronal activity via neurovascular coupling (NVC) has an essential role in maintenance of healthy cognitive function. In aging increased oxidative stress and cerebromicrovascular endothelial dysfunction impair NVC, contributing to cognitive decline. There is increasing evidence showing that a decrease in NADsup+/sup availability with age plays a critical role in a range of age-related cellular impairments but its role in impaired NVC responses remains unexplored. The present study was designed to test the hypothesis that restoring NADsup+/sup concentration may exert beneficial effects on NVC responses in aging. To test this hypothesis 24-month-old C57BL/6 mice were treated with nicotinamide mononucleotide (NMN), a key NADsup+/sup intermediate, for 2 weeks. NVC was assessed by measuring CBF responses (laser Doppler flowmetry) evoked by contralateral whisker stimulation. We found that NVC responses were significantly impaired in aged mice. NMN supplementation rescued NVC responses by increasing endothelial NO-mediated vasodilation, which was associated with significantly improved spatial working memory and gait coordination. These findings are paralleled by the sirtuin-dependent protective effects of NMN on mitochondrial production of reactive oxygen species and mitochondrial bioenergetics in cultured cerebromicrovascular endothelial cells derived from aged animals. Thus, a decrease in NADsup+/sup availability contributes to age-related cerebromicrovascular dysfunction, exacerbating cognitive decline. The cerebromicrovascular protective effects of NMN highlight the preventive and therapeutic potential of NADsup+/sup intermediates as effective interventions in patients at risk for vascular cognitive impairment (VCI).
机译:通过神经血管偶联(NVC)将脑血流量(CBF)调节为神经元活动在维持健康的认知功能中起着至关重要的作用。在衰老中,氧化应激增加和脑微血管内皮功能障碍损害NVC,导致认知能力下降。越来越多的证据表明,随着年龄的增长,NAD + 的减少在一系列与年龄有关的细胞损伤中起着至关重要的作用,但其在受损的NVC反应中的作用仍待探索。本研究旨在验证以下假设:恢复NAD + 的浓度可能会对衰老中的NVC反应产生有益的影响。为了检验该假设,将24个月大的C57BL / 6小鼠用烟酰胺单核苷酸(NMN)(一种关键的NAD + 中间体)治疗2周。通过测量对侧晶须刺激引起的CBF响应(激光多普勒血流仪)评估NVC。我们发现,NVC反应在衰老小鼠中明显受损。 NMN补充剂通过增加内皮NO介导的血管舒张来挽救NVC反应,这与空间工作记忆和步态协调性显着改善有关。这些发现与NMN对Sirtuin的保护作用有关,后者对源自老年动物的培养的脑微血管内皮细胞的线粒体产生活性氧和线粒体生物能。因此,NAD + 可用性的下降会导致与年龄有关的脑微血管功能障碍,加剧认知能力下降。 NMN的脑微血管保护作用突显了NAD + 中间体作为具有血管性认知障碍(VCI)风险的患者的有效干预措施的预防和治疗潜力。

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