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Nicotinamide mononucleotide inhibits post-ischemic NAD+ degradation and dramatically ameliorates brain damage following global cerebral ischemia

机译:烟酰胺单核苷酸抑制局部脑缺血后NAD +降解并显着改善脑损伤

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摘要

Nicotinamide adenine dinucleotide (NAD+) is an essential cofactor for multiple cellular metabolic reactions and has a central role in energy production. Brain ischemia depletes NAD+ pools leading to bioenergetics failure and cell death. Nicotinamide mononucleotide (NMN) is utilized by the NAD+ salvage pathway enzyme, nicotinamide adenylyltransferase (Nmnat) to generate NAD+. Therefore, we examined whether NMN could protect against ischemic brain damage. Mice were subjected to transient forebrain ischemia and treated with NMN or vehicle at the start of reperfusion or 30 min after the ischemic insult. At 2, 4, and 24 h of recovery, the proteins poly-ADP-ribosylation (PAR), hippocampal NAD+ levels, and expression levels of NAD+ salvage pathway enzymes were determined. Furthermore, animal’s neurologic outcome and hippocampal CA1 neuronal death was assessed after six days of reperfusion. NMN (62.5 mg/kg) dramatically ameliorated the hippocampal CA1 injury and significantly improved the neurological outcome. Additionally, the post-ischemic NMN treatment prevented the increase in PAR formation and NAD+ catabolism. Since the NMN administration did not affect animal’s temperature, blood gases or regional cerebral blood flow during recovery, the protective effect was not a result of altered reperfusion conditions. These data suggest that administration of NMN at a proper dosage has a strong protective effect against ischemic brain injury.
机译:烟酰胺腺嘌呤二核苷酸(NAD + )是多种细胞代谢反应的重要辅助因子,在能量产生中起着核心作用。脑缺血会耗尽NAD + 池,从而导致生物能衰竭和细胞死亡。 NAD + 挽救途径酶烟酰胺腺苷酸转移酶(Nmnat)利用烟酰胺单核苷酸(NMN)生成NAD + 。因此,我们检查了NMN是否可以预防缺血性脑损伤。在再灌注开始时或缺血性损伤后30分钟,对小鼠进行短暂的前脑缺血,并用NMN或溶媒治疗。在恢复的第2、4和24小时,蛋白质多ADP-核糖基化(PAR),海马NAD + 水平和NAD + 补救途径酶的表达水平被确定。此外,在再灌注六天后评估了动物的神经学结局和海马CA1神经元死亡。 NMN(62.5 mg / kg)显着改善了海马CA1损伤,并显着改善了神经功能。此外,缺血后NMN处理可防止PAR形成和NAD + 分解代谢的增加。由于NMN给药不会在恢复过程中影响动物的体温,血气或局部脑血流量,因此保护作用不是再灌注条件改变的结果。这些数据表明,以适当的剂量施用NMN对缺血性脑损伤具有很强的保护作用。

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