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衰老卵母细胞中的 NAD 代谢和线粒体活性:关注 NAMPT 刺激的影响。

NAD Metabolism and Mitochondrial Activity in the Aged Oocyte: Focus on the Effects of NAMPT Stimulation.

机构信息

Department of Life, Health and Environmental Sciences, University of L'Aquila, 67100 L'Aquila, Italy.

Department of Psychological Health and Territorial Sciences, School of Medicine and Health Sciences, "G. d'Annunzio" University of Chieti-Pescara, 66100 Chieti, Italy.

出版信息

Aging Dis. 2024 Sep 6;15(6):2828-2851. doi: 10.14336/AD.2024.0241.

Abstract

The ovary experiences an age-dependent decline starting during the fourth decade of life. Ovarian aging is the predominant factor driving female reproductive aging. Modern trend to postpone childbearing age contributes to reduced fertility and natality worldwide. Recently, the beneficial role of NAD precursors on the maintenance of oocyte competence and female fertility affected by aging has emerged. Nevertheless, age-related changes in NAD regulatory network have not been investigated so far. In this context, our goal was to investigate changes induced by the aging process in the expression level of genes participating in NAD biosynthetic and NAD consuming pathways and in the cellular bioenergetics in the mouse oocyte. From Ingenuity Pathway Analysis (IPA) it emerged that aging caused the downregulation of all cellular pathways for NAD synthesis (Kynurenine pathway, Preiss-Handler pathway and NAD salvage pathway) and deeply influenced the activity of NAD-dependent enzymes, i.e. PARPs and SIRTs, with effects on many cellular functions including compromised ROS detoxification. Considering that NAMPT, the rate-limiting enzyme of NAD salvage pathway, was deregulated, aged oocytes were matured in the presence of P7C3, NAMPT activator. P7C3 improved spindle assembly and mitochondrial bioenergetics and reduced mitochondrial proton leak. Moreover, P7C3 influenced gene expression of NAD regulatory network, with Sirt1 as the central node of IPA-interfered target gene network. Finally, P7C3 effectively counteracted oocyte alterations induced by exposure to oxidative stress. Our study contributes to establish effective NAD boosting interventions to alleviate the effects of advanced maternal age on fertility and explore their potential in redox-related fertility disorders.

摘要

卵巢在生命的第四个十年开始经历与年龄相关的衰退。卵巢衰老是导致女性生殖衰老的主要因素。现代社会推迟生育年龄的趋势导致全球生育能力和出生率下降。最近,NAD 前体对维持受衰老影响的卵母细胞功能和女性生育能力的有益作用已经显现。然而,迄今为止,尚未研究与年龄相关的 NAD 调节网络变化。在这种情况下,我们的目标是研究衰老过程对参与 NAD 生物合成和 NAD 消耗途径的基因的表达水平以及卵母细胞细胞能量代谢的变化。通过 IPA 分析,衰老导致所有细胞 NAD 合成途径(犬尿氨酸途径、普雷斯-哈德尔途径和 NAD 补救途径)的下调,并严重影响 NAD 依赖性酶(即 PARPs 和 SIRTs)的活性,从而影响许多细胞功能,包括 ROS 解毒功能受损。鉴于 NAD 补救途径的限速酶 NAMPT 失调,我们在 P7C3(NAMPT 激活剂)存在的情况下使衰老的卵母细胞成熟。P7C3 改善了纺锤体组装和线粒体能量代谢,减少了线粒体质子泄漏。此外,P7C3 还影响了 NAD 调节网络的基因表达,Sirt1 是 IPA 干预的靶基因网络的中心节点。最后,P7C3 有效逆转了氧化应激引起的卵母细胞改变。我们的研究有助于建立有效的 NAD 增强干预措施,以减轻高龄产妇对生育能力的影响,并探索其在与氧化还原相关的生育障碍中的潜在应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/91c9/11567263/9220b86a15ce/AD-15-6-2828-g1.jpg

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