Triptolide-induced hepatotoxicity via apoptosis and autophagy in zebrafish

Jingting Huo1, Qinwei Yu1, Yun Zhang2

  • 1Jiangsu Key Laboratory of Drug Screening, China Pharmaceutical University, Nanjing, China.

Insights

Triptolide (TP) causes liver injury in zebrafish, activating inflammatory responses. Autophagy, particularly Beclin1 and Atg5, plays a more significant role than apoptosis in this process.

Area of Science:

  • Toxicology
  • Molecular Biology
  • Zebrafish Models

Background:

  • Triptolide (TP) is a natural compound with research focusing on its hepatotoxicity.
  • Autophagy and apoptosis are key signaling pathways involved in TP-induced liver injury.

Purpose of the Study:

  • To establish a triptolide-induced hepatotoxicity model in zebrafish.
  • To investigate the roles of autophagy and apoptosis in liver injury progression.

Main Methods:

  • Zebrafish were exposed to triptolide (TP) to induce hepatotoxicity.
  • High-content imaging system (HCIS) was used for 3D liver imaging in vivo.
  • Gene expression of inflammatory cytokines, apoptosis, and autophagy markers was analyzed.

Main Results:

  • TP induced a dose- and time-dependent liver injury, characterized by reduced liver area and increased transaminase levels.
  • Fas-Caspase8 pathway activation and increased expression of apoptosis-related genes (Bcl-2, Bax, Caspase9, Caspase3) were observed.
  • Autophagy-related genes (Beclin1, Atg5, Atg3, Lc3) showed significant upregulation, with Beclin1 and Atg5 exhibiting the most severe changes.

Conclusions:

  • A triptolide-induced zebrafish hepatotoxicity model was successfully established using HCIS.
  • Autophagy plays a more critical role than apoptosis in triptolide-induced liver injury.
  • The Fas signaling pathway may be a primary target in triptolide hepatotoxicity.

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