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Impaired brain glucose metabolism in glucagon-like peptide-1 receptor knockout mice
2024-10-10
发表期刊NUTRITION & DIABETES (IF:4.6[JCR-2023],5.0[5-Year])
ISSN2044-4052
卷号14期号:1
发表状态已发表
DOI10.1038/s41387-024-00343-w
摘要

Background Quantitative mapping of the brain's metabolism is a critical tool in studying and diagnosing many conditions, from obesity to neurodegenerative diseases. In particular, noninvasive approaches are urgently required. Recently, there have been promising drug development approaches for the treatment of disorders related to glucose metabolism in the brain and, therefore, against obesity-associated diseases. One of the most important drug targets to emerge has been the Glucagon-like peptide-1 (GLP-1) and its receptor (GLP-1R). GLP and GLP-1R play an important role in regulating blood sugar and maintaining energy homeostasis. However, the macroscopic effects on brain metabolism and function due to the presence of GLP-1R are unclear. Methods To explore the physiological role of GLP-1R in mouse brain glucose metabolism, and its relationship to brain function, we used three methods. We used deuterium magnetic resonance spectroscopy (DMRS) to provide quantitative information about metabolic flux, fluorodeoxyglucose positron emission tomography (FDG-PET) to measure brain glucose metabolism, and resting state-functional MRI (rs-fMRI) to measure brain functional connectivity. We used these methods in both mice with complete GLP-1R knockout (GLP-1R KO) and wild-type C57BL/6N (WT) mice. Results The metabolic rate of GLP-1R KO mice was significantly slower than that of WT mice (p = 0.0345, WT mice 0.02335 +/- 0.057 mM/min, GLP-1R KO mice 0.01998 +/- 0.07 mM/min). Quantification of the mean [18F]FDG signal in the whole brain also showed significantly reduced glucose uptake in GLP-1R KO mice versus control mice (p = 0.0314). Observing rs-fMRI, the functional brain connectivity in GLP-1R KO mice was significantly lower than that in the WT group (p = 0.0032 for gFCD, p = 0.0002 for whole-brain correlation, p < 0.0001 for ALFF). Conclusions GLP-1R KO mice exhibit impaired brain glucose metabolism to high doses of exogenous glucose, and they also have reduced functional connectivity. This suggests that the GLP-1R KO mouse model may serve as a model for correlated metabolic and functional connectivity loss.

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收录类别SCI
语种英语
WOS研究方向Endocrinology & Metabolism ; Nutrition & Dietetics
WOS类目Endocrinology & Metabolism ; Nutrition & Dietetics
WOS记录号WOS:001337028400001
出版者SPRINGERNATURE
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文献类型期刊论文
条目标识符https://kms.shanghaitech.edu.cn/handle/2MSLDSTB/442478
专题iHuman研究所
生命科学与技术学院
iHuman研究所_PI研究组_钟桂生组
iHuman研究所_PI研究组_Garth John Thompson组
生命科学与技术学院_硕士生
生命科学与技术学院_博士生
通讯作者Li, Hui; Thompson, Garth J.
作者单位
1.ShanghaiTech Univ, iHuman Inst, Shanghai, Peoples R China
2.ShanghaiTech Univ, Sch Life Sci & Technol, Shanghai, Peoples R China
第一作者单位iHuman研究所
通讯作者单位iHuman研究所
第一作者的第一单位iHuman研究所
推荐引用方式
GB/T 7714
Li, Hui,Fang, Yujiao,Wang, Da,et al. Impaired brain glucose metabolism in glucagon-like peptide-1 receptor knockout mice[J]. NUTRITION & DIABETES,2024,14(1).
APA Li, Hui,Fang, Yujiao,Wang, Da,Shi, Bowen,&Thompson, Garth J..(2024).Impaired brain glucose metabolism in glucagon-like peptide-1 receptor knockout mice.NUTRITION & DIABETES,14(1).
MLA Li, Hui,et al."Impaired brain glucose metabolism in glucagon-like peptide-1 receptor knockout mice".NUTRITION & DIABETES 14.1(2024).
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