Evolution, Possibilities, and Prospects for Application of the Methods of Assessment of Pyridine Nucleotides Pool for Studying Mechanisms of Brain Plasticity in Normal and Pathological Conditions

IF 2.3 4区 生物学 Q3 BIOCHEMISTRY & MOLECULAR BIOLOGY
Anna V. Zubova, Alexander A. Groshkov, Arsenii K. Berdnikov, Svetlana V. Novikova, Natalia A. Rozanova, Lyudmila V. Nikolaeva, Vladimir V. Salmin, Nataliya A. Kolotyeva, Leonid G. Khaspekov, Alla B. Salmina, Stanislav O. Yurchenko, Sergey N. Illarioshkin
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引用次数: 0

Abstract

Nicotinamide adenine dinucleotide and its derivatives – NAD+, NADP+, NADH, NADPH – play an important role in cell metabolism, act as substrates or cofactors for a large number of enzymes involved in the DNA regulation of replication and repair, maintenance of calcium homeostasis in cells, biosynthetic processes, and energy production mechanisms. Changes in the ratio of oxidized and reduced forms of pyridine nucleotides accompanies development of oxidative and reductive stress that significantly contribute to the cell damage and induction of adaptive responses. Currently, a huge number of protocols aimed at quantitative or qualitative assessment of the pyridine nucleotide pool are in use, but all of them have their limitations associated with sample preparation processes, difficulties in the metabolite spectrum assessment, and complexity of data interpretation. Measuring pyridine nucleotide levels is relevant in the studies of pathophysiological regulatory mechanisms of the cell functional activity and intercellular communication. This is of particular relevance when studying the mechanisms of plasticity of the central nervous system in health and disease, since significant changes in the pools of pyridine nucleotides in cells are evident in neurodevelopmental disorders, neurodegeneration, and aging. Simple and reliable non-invasive methods for measuring levels of NAD+ and NADH are necessary to assess the brain cells metabolism with diagnostic and research purposes. The goal of this review is to conduct comparative analysis of the main methods for measuring the levels of oxidized and reduced pyridine nucleotides in cells and to identify key principles of their application for correct interpretation of the obtained data, including those used for studying central nervous system.

吡啶核苷酸库评估方法在正常和病理脑可塑性机制研究中的发展、可能性和应用前景
烟酰胺腺嘌呤二核苷酸及其衍生物NAD+、NADP+、NADH、NADPH在细胞代谢中发挥重要作用,是参与DNA复制和修复调控、维持细胞内钙稳态、生物合成过程和能量产生机制的大量酶的底物或辅因子。氧化和还原形式的吡啶核苷酸比例的变化伴随着氧化和还原应激的发展,显著有助于细胞损伤和诱导适应性反应。目前,大量旨在对吡啶核苷酸库进行定量或定性评估的方案正在使用中,但它们都存在与样品制备工艺、代谢物谱评估困难以及数据解释复杂性相关的局限性。测定吡啶核苷酸水平与研究细胞功能活动和细胞间通讯的病理生理调节机制有关。当研究中枢神经系统在健康和疾病中的可塑性机制时,这是特别相关的,因为细胞中吡啶核苷酸池的显著变化在神经发育障碍、神经变性和衰老中是明显的。简单可靠的无创检测NAD+和NADH水平的方法对于评估脑细胞代谢具有诊断和研究目的是必要的。本综述的目的是对测量细胞中氧化和还原吡啶核苷酸水平的主要方法进行比较分析,并确定其应用的关键原则,以正确解释所获得的数据,包括用于研究中枢神经系统的数据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Biochemistry (Moscow)
Biochemistry (Moscow) 生物-生化与分子生物学
CiteScore
4.70
自引率
3.60%
发文量
139
审稿时长
2 months
期刊介绍: Biochemistry (Moscow) is the journal that includes research papers in all fields of biochemistry as well as biochemical aspects of molecular biology, bioorganic chemistry, microbiology, immunology, physiology, and biomedical sciences. Coverage also extends to new experimental methods in biochemistry, theoretical contributions of biochemical importance, reviews of contemporary biochemical topics, and mini-reviews (News in Biochemistry).
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