糖尿病患者初期认知障碍的非侵入性代谢生物标志物:系统回顾和荟萃分析。

IF 5.4 2区 医学 Q1 ENDOCRINOLOGY & METABOLISM Diabetes, Obesity & Metabolism Pub Date : 2024-09-04 DOI:10.1111/dom.15916
Meng-Di Chen, Chao-Fan Deng, Peng-Fei Chen, Ao Li, Hua-Ze Wu, Fan Ouyang, Xu-Guang Hu, Jian-Xin Liu, Shu-Mei Wang, Dan Tang
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引用次数: 0

摘要

目的:糖尿病认知障碍(DCI)被认为是最严重、最常被忽视的糖尿病并发症之一,DCI 患者的代谢特征研究结果并不一致。本系统综述和荟萃分析旨在确定作为早期 DCI 潜在生物标志物的失调代谢物,为了解潜在的病理生理机制提供有价值的见解:截至 2024 年 3 月,对 PubMed、Embase、Web of Science 和 Cochrane 四个数据库进行了系统检索。随后,对临床研究进行了定性综述,然后对代谢物标记物进行了荟萃分析。最后,通过亚组分析和敏感性分析探讨了异质性的来源:结果:共检索到 774 篇独特的文献,涉及 4357 名参与者,并对多种代谢物进行了鉴定。其中,13 项临床研究报告了 DCI 组和对照组之间的代谢物差异。对六种脑代谢物和两种代谢物比率进行了元分析。结果显示,在 DCI 中,肌醇(MI)浓度明显增加,谷氨酸(Glu)、Glx(谷氨酸和谷氨酰胺)和 N-乙酰天冬氨酸/肌酸(NAA/Cr)比率下降,这些代谢物已被确定为评估 DCI 进展的最敏感代谢生物标记物。值得注意的是,与认知障碍相关的脑代谢变化在2型糖尿病患者中比在1型糖尿病患者中更为明显,而海马区成为与DCI相关的代谢变化最敏感的脑区:我们的研究结果表明,海马区的MI、Glu和Glx浓度以及NAA/Cr比率可作为早期DCI患者的代谢生物标志物。
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Non-invasive metabolic biomarkers in initial cognitive impairment in patients with diabetes: A systematic review and meta-analysis.

Aim: Diabetic cognitive impairment (DCI), considered one of the most severe and commonly overlooked complications of diabetes, has shown inconsistent findings regarding the metabolic profiles in DCI patients. This systematic review and meta-analysis aimed to identify dysregulated metabolites as potential biomarkers for early DCI, providing valuable insights into the underlying pathophysiological mechanisms.

Materials and methods: A systematic search of four databases, namely PubMed, Embase, Web of Science and Cochrane, was conducted up to March 2024. Subsequently, a qualitative review of clinical studies was performed followed by a meta-analysis of metabolite markers. Finally, the sources of heterogeneity were explored through subgroup and sensitivity analyses.

Results: A total of 774 unique publications involving 4357 participants and the identification of multiple metabolites were retrieved. Of these, 13 clinical studies reported metabolite differences between the DCI and control groups. Meta-analysis was conducted for six brain metabolites and two metabolite ratios. The results revealed a significant increase in myo-inositol (MI) concentration and decreases in glutamate (Glu), Glx (glutamate and glutamine) and N-acetylaspartate/creatine (NAA/Cr) ratios in DCI, which have been identified as the most sensitive metabolic biomarkers for evaluating DCI progression. Notably, brain metabolic changes associated with cognitive impairment are more pronounced in type 2 diabetes mellitus than in type 1 diabetes mellitus, and the hippocampus emerged as the most sensitive brain region regarding metabolic changes associated with DCI.

Conclusions: Our results suggest that MI, Glu, and Glx concentrations and NAA/Cr ratios within the hippocampus may serve as metabolic biomarkers for patients with early-stage DCI.

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来源期刊
Diabetes, Obesity & Metabolism
Diabetes, Obesity & Metabolism 医学-内分泌学与代谢
CiteScore
10.90
自引率
6.90%
发文量
319
审稿时长
3-8 weeks
期刊介绍: Diabetes, Obesity and Metabolism is primarily a journal of clinical and experimental pharmacology and therapeutics covering the interrelated areas of diabetes, obesity and metabolism. The journal prioritises high-quality original research that reports on the effects of new or existing therapies, including dietary, exercise and lifestyle (non-pharmacological) interventions, in any aspect of metabolic and endocrine disease, either in humans or animal and cellular systems. ‘Metabolism’ may relate to lipids, bone and drug metabolism, or broader aspects of endocrine dysfunction. Preclinical pharmacology, pharmacokinetic studies, meta-analyses and those addressing drug safety and tolerability are also highly suitable for publication in this journal. Original research may be published as a main paper or as a research letter.
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