Anti-Tumor Effect of Celastrol on Hepatocellular Carcinoma by the circ_SLIT3/miR-223-3p/CXCR4 Axis

Hailong Si1, Huiling Wang1, Haijuan Xiao2

  • 1First School of Clinical Medical, Shaanxi University of Traditional Chinese Medicine, Xianyang, 712000, People's Republic of China.

Abstract

Insights

Celastrol, a potential anti-tumor agent, exerts its effects in hepatocellular carcinoma (HCC) by down-regulating circRNA SLIT3 (circ_SLIT3). This action involves the circ_SLIT3/miR-223-3p/CXCR4 axis, offering new therapeutic insights for HCC treatment.

Area of Science:

  • Oncology
  • Molecular Biology
  • Genetics

Background:

  • Celastrol shows promise as an anti-tumor agent for hepatocellular carcinoma (HCC).
  • The precise molecular mechanisms underlying celastrol's anti-HCC effects remain incompletely understood.
  • This study investigates the role of circular RNAs (circRNAs) in mediating celastrol's anti-tumor activity in HCC.

Purpose of the Study:

  • To elucidate the molecular determinants of celastrol's anti-HCC efficacy.
  • To identify the involvement of specific circRNAs in celastrol's anti-tumor actions.
  • To explore the circRNA SLIT3 (circ_SLIT3)/miR-223-3p/CXCR4 axis in HCC progression and celastrol's mechanism of action.

Main Methods:

  • Functional assays (colony formation, MTS, transwell, flow cytometry) assessed HCC cell behavior.
  • Quantitative real-time polymerase chain reaction (qRT-PCR) and Western blot measured levels of circ_SLIT3, miR-223-3p, and CXCR4.
  • Dual-luciferase reporter assays confirmed targeted interactions within the circ_SLIT3/miR-223-3p/CXCR4 pathway.
  • In vivo studies evaluated the impact of celastrol and circ_SLIT3 on tumor growth.

Main Results:

  • Celastrol inhibited HCC cell proliferation, migration, and invasion, while promoting apoptosis in vitro and suppressing tumor growth in vivo.
  • Celastrol treatment led to decreased expression of circ_SLIT3 in HCC cells.
  • The study identified a mechanism where circ_SLIT3 sponges miR-223-3p, thereby regulating CXCR4 expression. Celastrol's anti-HCC effect was mediated through this circ_SLIT3/miR-223-3p/CXCR4 axis.

Conclusions:

  • The circ_SLIT3/miR-223-3p/CXCR4 axis represents a novel molecular mechanism underlying celastrol's anti-HCC effects.
  • This finding provides new insights into the role of circRNAs in the anti-tumor activity of celastrol.
  • The identified axis offers potential therapeutic targets for hepatocellular carcinoma treatment.

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