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补充一种假定的热量限制模拟微量营养素混合物可增加健康中年男女大脑中的谷胱甘肽浓度并改善神经能量代谢。

Supplementation with a putative calorie restriction mimetic micronutrient blend increases glutathione concentrations and improves neuroenergetics in brain of healthy middle-aged men and women.

机构信息

Pharmanex Research, NSE Products, Inc., Provo, UT, USA.

Department of Psychiatry, University of Utah School of Medicine, Salt Lake City, UT, USA; Diagnostic Neuroimaging, University of Utah, Salt Lake City, UT, USA.

出版信息

Free Radic Biol Med. 2020 Jun;153:112-121. doi: 10.1016/j.freeradbiomed.2020.04.017. Epub 2020 Apr 23.

Abstract

BACKGROUND

Caloric restriction (CR) without micronutrient deficiency has been shown to increase both lifespan and healthspan. In animals, CR has been demonstrated to increase glutathione (GSH), a neuroprotective antioxidant, in the brain and preserve brain mitochondrial function by altering neuroenergetics. In humans it has been associated with improvements in mood states and cognitive function. However, most CR studies have employed a 30-60% reduction in calories which is likely too stringent for most people to adhere to long-term. Thus, there is an unmet need for nutritional supplements which can mimic the biological effects of CR, without the need for calorie limitations.

AIM

The purpose of the present randomized, placebo-controlled clinical trial was to use Proton (H) Magnetic Resonance Spectroscopic (MRS) measurements to determine non-invasively whether a blend of micronutrients, a putative CR mimetic, positively modulates metabolites related to neuroprotection and neuroenergetics in the brain.

METHODS

Healthy middle-aged men and women (N = 63 [33 women]; age: 40-60 years) were randomized in a double-blind manner to 6 weeks supplementation with either the putative CR mimetic or placebo. At baseline and 6 weeks, subjects underwent MRS at 3 T to investigate changes in brain chemistry, including the neurometabolites: GSH, Glutamate (Glu), Glutamine (Gln) and N-Acetylaspartate (NAA).

RESULTS

GSH, a marker of antioxidant and cellular redox status, increased in the brain of participants in the supplement group. The supplement group also showed an increase in the Glu/Gln ratio, a marker of excitatory neurotransmission and bioenergetics. A trend for an increase in NAA/HO, a marker of neuronal integrity, was observed in females in the supplement group.

CONCLUSIONS

The present study reveals that 6-weeks daily supplementation with a micronutrient blend elicits positive changes in brain neurochemistry. This is the first study to demonstrate that a putative CR mimetic increases brain GSH concentrations and improves neuroprotection and neuroenergetics in the brain of healthy humans. This study was registered at www.clinicaltrials.gov as NCT02439983.

摘要

背景

热量限制(CR)而不缺乏微量营养素已被证明可以延长寿命和健康寿命。在动物中,CR 已被证明可以通过改变神经能量学来增加大脑中的谷胱甘肽(GSH),一种神经保护抗氧化剂,并维持大脑线粒体功能。在人类中,它与情绪状态和认知功能的改善有关。然而,大多数 CR 研究采用了 30-60%的卡路里减少,这对于大多数人来说可能过于严格,无法长期坚持。因此,人们需要一种营养补充剂,可以模拟 CR 的生物学效应,而无需限制卡路里。

目的

本随机、安慰剂对照临床试验的目的是使用质子(H)磁共振波谱(MRS)测量来确定一种混合微量营养素(一种潜在的 CR 模拟物)是否可以非侵入性地正面调节大脑中与神经保护和神经能量相关的代谢物。

方法

健康的中年男女(N=63[33 名女性];年龄:40-60 岁)以双盲方式随机分为 6 周补充潜在的 CR 模拟物或安慰剂。在基线和 6 周时,受试者在 3T 下进行 MRS 以研究大脑化学变化,包括神经代谢物:GSH、谷氨酸(Glu)、谷氨酰胺(Gln)和 N-乙酰天冬氨酸(NAA)。

结果

GSH 是抗氧化剂和细胞氧化还原状态的标志物,补充组参与者的大脑中 GSH 增加。补充组的 Glu/Gln 比值也增加,这是兴奋性神经递质和生物能量的标志物。补充组女性的 NAA/HO 比值(神经元完整性的标志物)也有增加的趋势。

结论

本研究表明,6 周每天补充微量营养素混合物会引起大脑神经化学的积极变化。这是第一项证明潜在的 CR 模拟物可以增加大脑 GSH 浓度并改善健康人类大脑的神经保护和神经能量的研究。本研究在 www.clinicaltrials.gov 上注册为 NCT02439983。

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