田俊生, 赵云昊, 令狐婷, 武文泽, 刘少博, 王贤贤, 秦雪梅. 以抑郁症葡萄糖分解代谢障碍机制解析为例探究稳定同位素示踪代谢组学的研究思路与策略J. 药学学报, 2023, 58(7): 1725-1731. DOI: 10.16438/j.0513-4870.2022-1286
引用本文: 田俊生, 赵云昊, 令狐婷, 武文泽, 刘少博, 王贤贤, 秦雪梅. 以抑郁症葡萄糖分解代谢障碍机制解析为例探究稳定同位素示踪代谢组学的研究思路与策略J. 药学学报, 2023, 58(7): 1725-1731. DOI: 10.16438/j.0513-4870.2022-1286
TIAN Jun-sheng, ZHAO Yun-hao, LING-HU Ting, WU Wen-ze, LIU Shao-bo, WANG Xian-xian, QIN Xue-mei. Taking the mechanism of glucose catabolism disorder in depression as an example to explore the research ideas and strategies of stable isotope tracer metabolomicsJ. Acta Pharmaceutica Sinica, 2023, 58(7): 1725-1731. DOI: 10.16438/j.0513-4870.2022-1286
Citation: TIAN Jun-sheng, ZHAO Yun-hao, LING-HU Ting, WU Wen-ze, LIU Shao-bo, WANG Xian-xian, QIN Xue-mei. Taking the mechanism of glucose catabolism disorder in depression as an example to explore the research ideas and strategies of stable isotope tracer metabolomicsJ. Acta Pharmaceutica Sinica, 2023, 58(7): 1725-1731. DOI: 10.16438/j.0513-4870.2022-1286

以抑郁症葡萄糖分解代谢障碍机制解析为例探究稳定同位素示踪代谢组学的研究思路与策略

Taking the mechanism of glucose catabolism disorder in depression as an example to explore the research ideas and strategies of stable isotope tracer metabolomics

  • 摘要: 稳定同位素示踪代谢组学通过示踪标记的原子对整个机体代谢过程进行追踪分析, 属于生物医药领域前沿技术。该技术对于阐释疾病发生机制、发现疾病的生物标志物和药物作用靶点具有重要意义与价值。本文以抑郁症葡萄糖分解代谢障碍机制解析为例, 系统地阐述稳定同位素示踪代谢组学技术及其应用。提出了在非标记代谢组学基础上的稳定同位素示踪代谢组学研究思路, 给出了从代谢物同位素丰度、关键代谢酶、代谢物流向和代谢物流量四个维度展开生物学意义阐释的研究策略, 突破了基于整体动物实验的稳定同位素示踪代谢组学研究技术瓶颈, 为该技术的推广应用提供科学依据。

     

    Abstract: Stable isotope tracer metabolomics tracks and analyzes the whole metabolic process of the body through the tracer atoms, which belongs to the frontier technology in the field of biomedicine. This technology is of great significance and value for explaining the pathogenesis of diseases, finding biomarkers of diseases and drug action targets. Taking the mechanism of glucose catabolism disorder in depression as an example, this paper systematically expounds the stable isotope tracer metabolomics technology and its application. The research idea of stable isotope tracer metabolomics based on unmarked metabolomics was put forward, and the research strategy of biological significance interpretation from four dimensions of metabolite isotope abundance, key metabolic enzymes, metabolic flow direction and metabolite flow was given, which broke through the bottleneck of stable isotope tracer metabolomics research technology based on overall animal experiment, and provided scientific basis for the promotion and application of this technology.

     

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