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Triptolide Causes Spermatogenic Disorders by Inducing Apoptosis in the Mitochondrial Pathway of Mouse Testicular
Jiantao Zhao1, Maosheng Cao2, Haisheng Yi1
1Department of Andrology, The First Hospital of Jilin University, Jilin University, Changchun 130021, China.
Abstract:
Triptolide (TP) is a diterpenoid compound extracted from the traditional Chinese medicinal herb Tripterygium wilfordii. It has antitumor and anti-inflammatory effects and stimulates immunity. However, its serious side effects, especially reproductive toxicity, limit its clinical application. This study employed a testicular injury model established by intraperitoneally injecting TP (0.2 mg/kg) in C57BL/6J male mice (age = 7-8 weeks) for 14 days. The control and TP mice's testicular tissues were subjected to transcriptome sequencing to assess potential testicular damage mechanisms. Based on the transcriptome sequencing results and relevant literature reports, further experiments were performed. In addition, to alleviate triptolide-induced testicular damage, we treated the mice with N-acetyl-L-cysteine (NAC). The acquired data revealed that compared with the control mice, the TP-treated mice's testes indicated severe damage. Transcriptome sequencing identified differentially expressed genes that showed enrichment in cell differentiation, apoptotic process, cell cycle, glutathione (GSH) metabolism, and the p53 signaling pathway. Furthermore, TUNEL assays and Western blot analysis showed that in the TP mice's testicular tissues, the spermatocytes had mitochondrial pathway apoptosis as well as abnormal mitochondrial morphology and structure. Triptolide induces oxidative stress in testicular tissue by enhancing pro-oxidative systems and inhibiting antioxidant systems. NAC reduced testicular damage and apoptosis by alleviating TP-induced oxidative stress. This study also employed a GC2 cell line for in-vitro analyses, and the results were consistent with the in vivo experiments. This study provides evidence for alleviating TP's adverse effects on the male reproductive system for better clinical application.
Insights
Triptolide causes severe testicular damage and reproductive toxicity in mice by inducing oxidative stress and apoptosis. N-acetyl-L-cysteine (NAC) treatment alleviates these adverse effects, suggesting a potential therapeutic strategy.
Area of Science:
- Reproductive Toxicology
- Pharmacology
- Molecular Biology
Background:
- Triptolide (TP), derived from Tripterygium wilfordii, exhibits antitumor properties but is limited by severe reproductive toxicity.
- Understanding the molecular mechanisms of TP-induced testicular damage is crucial for mitigating its clinical risks.
Purpose of the Study:
- To investigate the mechanisms underlying triptolide-induced testicular injury in male mice.
- To evaluate the protective effect of N-acetyl-L-cysteine (NAC) against triptolide's reproductive toxicity.
Main Methods:
- Establishment of a testicular injury model in C57BL/6J male mice using triptolide administration.
- Transcriptome sequencing of testicular tissues to identify differentially expressed genes and pathways.
- TUNEL assays and Western blot analysis to assess apoptosis and mitochondrial function.
- In vitro studies using GC2 cell line.
Main Results:
- Triptolide treatment led to severe testicular damage, characterized by apoptosis, altered mitochondrial morphology, and disruption of cell cycle and differentiation pathways.
- Transcriptome analysis revealed enrichment in p53 signaling and glutathione metabolism pathways.
- Triptolide induced significant oxidative stress by increasing pro-oxidative factors and decreasing antioxidant defenses.
- N-acetyl-L-cysteine (NAC) administration effectively reduced testicular damage and apoptosis, mitigating oxidative stress.
Conclusions:
- Triptolide induces male reproductive toxicity primarily through oxidative stress and mitochondrial apoptosis.
- N-acetyl-L-cysteine (NAC) demonstrates a protective effect against triptolide-induced testicular damage.
- This study provides a basis for developing strategies to manage triptolide's adverse effects on the male reproductive system.
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