Proteomics

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Proteomic detection of mouse liver


ABSTRACT: This study aimed to investigate the mechanism of SYT on lipid metabolism and insulin sensitivity in high-fat diet (HFD)-induced obese mice by means of combining lipidomics and proteomics. The obese mice models were developed via HFD feeding for 20 consecutive weeks. Mice in the treatment group were given metformin and SYT respectively, and the effects of SYT on body weight, blood glucose, insulin sensitivity, fat accumulation in the organs, and pathological changes in the liver were monitored. Lipid metabolism was examined by lipidomics. Further determination of signaling pathways was detected by proteomics. The biological contributions of the compounds detected in SYT's chemical fingerprint were predicted by network pharmacology. Overall, our study provides supportive evidence for the mechanism of SYT's therapeutic effect on dysregulated lipid metabolism in diabesity.

INSTRUMENT(S): Q Exactive HF-X

ORGANISM(S): Mus Musculus (mouse)

TISSUE(S): Liver

SUBMITTER: yanzhen Zhao  

LAB HEAD: Lin Li

PROVIDER: PXD028317 | Pride | 2022-02-15

REPOSITORIES: Pride

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Publications

Sanye Tablet Ameliorates Insulin Resistance and Dysregulated Lipid Metabolism in High-Fat Diet-Induced Obese Mice.

Yao Minghe M   Li Lin L   Huang Ming M   Tan Yao Y   Shang Ye Y   Meng Xianghui X   Pang Yafen Y   Xu Hong H   Zhao Xin X   Lei Wei W   Chang Yanxu Y   Wang Yi Y   Zhang Deqin D   Zhang Boli B   Li Yuhong Y  

Frontiers in pharmacology 20210929


Sanye Tablet (SYT) is a patent prescription widely used in treating T2D and pre-diabetes, especially T2D comorbid with hypertriglyceridemia, for many years in China. However, the underlying mechanism that accounts for the anti-diabetic potential of SYT by regulating lipid-related intermediates remains to be elucidated. This study aimed to investigate the mechanism of SYT on lipid metabolism and insulin sensitivity in high-fat diet (HFD)-induced obese mice by means of combining lipidomics and pro  ...[more]

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