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Published on: May 2, 2025
Integrated Proteomics and Metabolomics Reveal the Mechanism of Nephrotoxicity Induced by Triptolide
Lijuan Xie1, Yiwei Zhao1, Jingyi Duan1
1Tianjin University of Traditional Chinese Medicine, No. 10, Poyang Lake Road, West Zone, Tuanbo New City, Jinghai District, Tianjin 301600, China.
Abstract:
Triptolide (TP), the main active ingredient of Tripterygium wilfordii Hook F., has great potential in the treatment of autoimmune diseases. However, it has been found that the side effects of TP involve multiple organs and systems, of which the most serious side effects relate to the kidney. The mechanism of nephrotoxicity caused by TP requires further investigation. In the present study, we integrated proteomic and metabolomic methods to identify proteins and small molecule metabolites associated with TP-induced nephrotoxicity. There was a significant difference (p value <0.05) in the expression changes of 357 proteins for quantitative proteomics. In addition, high resolution metabolomic data showed significant changes in the levels of 9 metabolites, including hypoxanthine, PC(22:0/18:4), sphingosine, phenylalanine, etc. Finally, based on the Kyoto Encyclopaedia of Genes and Genomes (KEGG) database for network analysis, it was determined that the 7 differentially expressed proteins were highly correlated with these 9 metabolites. Enrichment analysis revealed that the metabolic pathways involved purine and pyrimidine metabolism, glycerol and phospholipid metabolism, sphingolipid metabolism, and amino acid metabolism. The key target proteins were verified by Western blot technology, and the mechanism of TP-induced nephrotoxicity was further elucidated to provide a basis for safe and rational application.
Insights
Triptolide (TP) can treat autoimmune diseases but causes kidney damage. This study used proteomics and metabolomics to identify key proteins and metabolites involved in TP-induced nephrotoxicity, revealing affected metabolic pathways.
Area of Science:
- Pharmacology
- Toxicology
- Biochemistry
Background:
- Triptolide (TP), derived from Tripterygium wilfordii Hook F., shows promise for autoimmune diseases.
- TP exhibits significant nephrotoxicity, necessitating investigation into its underlying mechanisms.
Purpose of the Study:
- To identify proteins and metabolites linked to Triptolide-induced nephrotoxicity.
- To elucidate the molecular pathways contributing to TP-induced kidney damage.
Main Methods:
- Integrated quantitative proteomics and high-resolution metabolomics.
- Network analysis using the Kyoto Encyclopaedia of Genes and Genomes (KEGG) database.
- Verification of key proteins via Western blot.
Main Results:
- Identified 357 differentially expressed proteins and 9 significantly altered metabolites (e.g., hypoxanthine, sphingosine).
- Network analysis revealed correlations between 7 proteins and 9 metabolites.
- Enrichment analysis highlighted involvement of purine, pyrimidine, lipid, and amino acid metabolism.
Conclusions:
- TP-induced nephrotoxicity involves dysregulation of specific metabolic pathways.
- Understanding these mechanisms provides a foundation for safer Triptolide application.
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