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Functional metabolomics discover pentose and glucuronate interconversion pathways as promising targets for Yang Huang syndrome treatment with Yinchenhao Tang.
Sun, Hui; Zhang, Ai-Hua; Song, Qi; Fang, Heng; Liu, Xing-Yuan; Su, Jing; Yang, Le; Yu, Meng-Die; Wang, Xi-Jun.
Affiliation
  • Sun H; National Chinmedomics Research Center, Sino-America Chinmedomics Technology Collaboration Center, National TCM Key Laboratory of Serum Pharmacochemistry, Laboratory of Metabolomics, Chinmedomics Research Center of TCM State Administration, Department of Pharmaceutical Analysis, Heilongjiang Universi
  • Zhang AH; National Chinmedomics Research Center, Sino-America Chinmedomics Technology Collaboration Center, National TCM Key Laboratory of Serum Pharmacochemistry, Laboratory of Metabolomics, Chinmedomics Research Center of TCM State Administration, Department of Pharmaceutical Analysis, Heilongjiang Universi
  • Song Q; National Chinmedomics Research Center, Sino-America Chinmedomics Technology Collaboration Center, National TCM Key Laboratory of Serum Pharmacochemistry, Laboratory of Metabolomics, Chinmedomics Research Center of TCM State Administration, Department of Pharmaceutical Analysis, Heilongjiang Universi
  • Fang H; National Chinmedomics Research Center, Sino-America Chinmedomics Technology Collaboration Center, National TCM Key Laboratory of Serum Pharmacochemistry, Laboratory of Metabolomics, Chinmedomics Research Center of TCM State Administration, Department of Pharmaceutical Analysis, Heilongjiang Universi
  • Liu XY; National Chinmedomics Research Center, Sino-America Chinmedomics Technology Collaboration Center, National TCM Key Laboratory of Serum Pharmacochemistry, Laboratory of Metabolomics, Chinmedomics Research Center of TCM State Administration, Department of Pharmaceutical Analysis, Heilongjiang Universi
  • Su J; National Chinmedomics Research Center, Sino-America Chinmedomics Technology Collaboration Center, National TCM Key Laboratory of Serum Pharmacochemistry, Laboratory of Metabolomics, Chinmedomics Research Center of TCM State Administration, Department of Pharmaceutical Analysis, Heilongjiang Universi
  • Yang L; National Chinmedomics Research Center, Sino-America Chinmedomics Technology Collaboration Center, National TCM Key Laboratory of Serum Pharmacochemistry, Laboratory of Metabolomics, Chinmedomics Research Center of TCM State Administration, Department of Pharmaceutical Analysis, Heilongjiang Universi
  • Yu MD; National Chinmedomics Research Center, Sino-America Chinmedomics Technology Collaboration Center, National TCM Key Laboratory of Serum Pharmacochemistry, Laboratory of Metabolomics, Chinmedomics Research Center of TCM State Administration, Department of Pharmaceutical Analysis, Heilongjiang Universi
  • Wang XJ; National Chinmedomics Research Center, Sino-America Chinmedomics Technology Collaboration Center, National TCM Key Laboratory of Serum Pharmacochemistry, Laboratory of Metabolomics, Chinmedomics Research Center of TCM State Administration, Department of Pharmaceutical Analysis, Heilongjiang Universi
RSC Adv ; 8(64): 36831-36839, 2018 Oct 26.
Article in En | MEDLINE | ID: mdl-35558940
ABSTRACT
Yinchenhao Tang (YCHT), a classic traditional Chinese medicine (TCM) formulae, plays an important role in the treatment of Yang Huang syndrome (YHS). With the emergence of new biomarkers of YHS uncovered via metabonomics, the underlying functional mechanisms are still not clear. Functional metabolomics aims at converting biomarkers derived from metabonomics into disease mechanisms. Here, an integrated non-target metabolomics and IPA strategy were used to investigate the YCHT intervention on YHS. Our metabolomics study has shown that the potential protective effect of YCHT on YHS mice leads to significant changes in the metabolic profile by modulating the biomarkers and regulating the metabolic disorders. Twenty two differential metabolite biomarkers and fifteen involved metabolic pathways were correlated with the regulation of YCHT treatment on YHS. Functional metabolomics identified a core biomarker, d-glucuronic acid in pentose and glucuronate interconversion pathways, which was directly related to the target prediction of UDP-glucuronosyltransferase 1A1 and eventually leaded to a series of disturbances. In conclusion, this study shows that functional metabolomics can discover metabolic pathways as promising targets.

Full text: 1 Database: MEDLINE Traditional Medicines: Medicinas_tradicionales_de_asia / Medicina_china Language: En Journal: RSC Adv Year: 2018 Type: Article

Full text: 1 Database: MEDLINE Traditional Medicines: Medicinas_tradicionales_de_asia / Medicina_china Language: En Journal: RSC Adv Year: 2018 Type: Article