Analysis on the similarity and difference of the mechanism of Guizhi decoction and formula granules alleviating blood stasis syndrome via metabolomics

Objective To analyze the similarity and difference of the mechanism for Guizhi decoction and its formula granules alleviating blood stasis syndrome (BSS) in rats using proton neclear magnetic resonance spectroscopy (1H-NMR) metabolomics. Methods Firstly, the chemical constituents of Guizhi decoction...

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Main Authors: LIANG Xuehong, WEI Jinbin, PAN Shihan, FENG Linlin, ZHANG Xueyan, TANG Meichen, SU Zhiheng
Format: Article
Language:zho
Published: Editorial Office of Journal of Guangxi Medical University 2024-12-01
Series:Guangxi Yike Daxue xuebao
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Online Access:https://journal.gxmu.edu.cn/article/doi/10.16190/j.cnki.45-1211/r.2024.12.004
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author LIANG Xuehong
WEI Jinbin
PAN Shihan
FENG Linlin
ZHANG Xueyan
TANG Meichen
SU Zhiheng
author_facet LIANG Xuehong
WEI Jinbin
PAN Shihan
FENG Linlin
ZHANG Xueyan
TANG Meichen
SU Zhiheng
author_sort LIANG Xuehong
collection DOAJ
description Objective To analyze the similarity and difference of the mechanism for Guizhi decoction and its formula granules alleviating blood stasis syndrome (BSS) in rats using proton neclear magnetic resonance spectroscopy (1H-NMR) metabolomics. Methods Firstly, the chemical constituents of Guizhi decoction and its formula granules were analyzed based on liquid chromatography-mass spectrometry (LC-MS) technology. Secondly, 28 SD female mice were randomly divided into control group, model group, decoction group and granule group. The model was constructed with ice water bath and subcutaneous injection of adrenaline. After the modeling was completed, 24 h urine of rats was collected and metabolomic analysis was performed to reveal the metabolic profile regulation mechanism of BSS rats improved by Guizhi decoction and formula granules from the metabolomic level. Results A total of 19 and 20 chemical constituents were identified in decoction and formula granules respectively, and 15 chemical constituents were identified together, 4 chemical constituents were identified in decoction but not in formula granules, and 5 chemical constituents were identified in formula granules but not in decoction. Compared with the model group, the index of whole blood viscosity was significantly regressed after drug intervention in the decoction group and the granule group, and the index of red blood cell aggregation was significantly regressed in the decoction group. The metabolomics results showed that 15 differential metabolites were screened in the decoction group compared with the model group, and that it could improve BSS by modulating four pathways: glycine, serine and threonine metabolism, glyoxylate and dicarboxylate metabolism, histidine metabolism, and taurine and hypotaurine metabolism. Thirteen differential metabolites were screened in the granule group compared with the model group. Guizhi formula granules could alleviate BSS by regulating three pathways: glycine, serine and threonine metabolism, glyoxylate and dicarboxylate metabolism and histidine metabolism. Conclusion Both Guizhi decoction and formula granules can improve BSS by regressing disordered differential metabolites and metabolic pathways, which indicates that Guizhi formula granules have similar efficacy to the decoction.
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spelling doaj-art-904cd8c0c66a40a2abfefc9cb20d42492025-08-20T02:15:23ZzhoEditorial Office of Journal of Guangxi Medical UniversityGuangxi Yike Daxue xuebao1005-930X2024-12-0141121603161310.16190/j.cnki.45-1211/r.2024.12.004gxykdxxb-41-12-1603Analysis on the similarity and difference of the mechanism of Guizhi decoction and formula granules alleviating blood stasis syndrome via metabolomicsLIANG Xuehong0WEI Jinbin1PAN Shihan2FENG Linlin3ZHANG Xueyan4TANG Meichen5SU Zhiheng6Pharmaceutical College, Guangxi Medical University, Nanning 530021, ChinaPharmaceutical College, Guangxi Medical University, Nanning 530021, ChinaPharmaceutical College, Guangxi Medical University, Nanning 530021, ChinaPharmaceutical College, Guangxi Medical University, Nanning 530021, ChinaThe First People's Hospital of Yulin City, Yulin 537099, ChinaPharmaceutical College, Guangxi Medical University, Nanning 530021, ChinaPharmaceutical College, Guangxi Medical University, Nanning 530021, ChinaObjective To analyze the similarity and difference of the mechanism for Guizhi decoction and its formula granules alleviating blood stasis syndrome (BSS) in rats using proton neclear magnetic resonance spectroscopy (1H-NMR) metabolomics. Methods Firstly, the chemical constituents of Guizhi decoction and its formula granules were analyzed based on liquid chromatography-mass spectrometry (LC-MS) technology. Secondly, 28 SD female mice were randomly divided into control group, model group, decoction group and granule group. The model was constructed with ice water bath and subcutaneous injection of adrenaline. After the modeling was completed, 24 h urine of rats was collected and metabolomic analysis was performed to reveal the metabolic profile regulation mechanism of BSS rats improved by Guizhi decoction and formula granules from the metabolomic level. Results A total of 19 and 20 chemical constituents were identified in decoction and formula granules respectively, and 15 chemical constituents were identified together, 4 chemical constituents were identified in decoction but not in formula granules, and 5 chemical constituents were identified in formula granules but not in decoction. Compared with the model group, the index of whole blood viscosity was significantly regressed after drug intervention in the decoction group and the granule group, and the index of red blood cell aggregation was significantly regressed in the decoction group. The metabolomics results showed that 15 differential metabolites were screened in the decoction group compared with the model group, and that it could improve BSS by modulating four pathways: glycine, serine and threonine metabolism, glyoxylate and dicarboxylate metabolism, histidine metabolism, and taurine and hypotaurine metabolism. Thirteen differential metabolites were screened in the granule group compared with the model group. Guizhi formula granules could alleviate BSS by regulating three pathways: glycine, serine and threonine metabolism, glyoxylate and dicarboxylate metabolism and histidine metabolism. Conclusion Both Guizhi decoction and formula granules can improve BSS by regressing disordered differential metabolites and metabolic pathways, which indicates that Guizhi formula granules have similar efficacy to the decoction.https://journal.gxmu.edu.cn/article/doi/10.16190/j.cnki.45-1211/r.2024.12.004guizhiformula granuleschemical constituentblood stasis syndromemetabolomics
spellingShingle LIANG Xuehong
WEI Jinbin
PAN Shihan
FENG Linlin
ZHANG Xueyan
TANG Meichen
SU Zhiheng
Analysis on the similarity and difference of the mechanism of Guizhi decoction and formula granules alleviating blood stasis syndrome via metabolomics
Guangxi Yike Daxue xuebao
guizhi
formula granules
chemical constituent
blood stasis syndrome
metabolomics
title Analysis on the similarity and difference of the mechanism of Guizhi decoction and formula granules alleviating blood stasis syndrome via metabolomics
title_full Analysis on the similarity and difference of the mechanism of Guizhi decoction and formula granules alleviating blood stasis syndrome via metabolomics
title_fullStr Analysis on the similarity and difference of the mechanism of Guizhi decoction and formula granules alleviating blood stasis syndrome via metabolomics
title_full_unstemmed Analysis on the similarity and difference of the mechanism of Guizhi decoction and formula granules alleviating blood stasis syndrome via metabolomics
title_short Analysis on the similarity and difference of the mechanism of Guizhi decoction and formula granules alleviating blood stasis syndrome via metabolomics
title_sort analysis on the similarity and difference of the mechanism of guizhi decoction and formula granules alleviating blood stasis syndrome via metabolomics
topic guizhi
formula granules
chemical constituent
blood stasis syndrome
metabolomics
url https://journal.gxmu.edu.cn/article/doi/10.16190/j.cnki.45-1211/r.2024.12.004
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