AC099850.3 promotes HBV-HCC cell proliferation and invasion through regulating CD276: a novel strategy for sorafenib

Aoxiao He1, Zhihao Huang1, Qian Feng2

  • 1Department of General Surgery, The Second Affiliated Hospital, Jiangxi Medical College, Nanchang University, No. 1, Minde Road, Nanchang, 330006, China.

PubMed
Abstract

Insights

This study reveals that AC099850.3 promotes hepatitis B virus-related hepatocellular carcinoma (HBV-HCC) by accelerating cell cycle and upregulating CD276. Nanoparticles (NPs) loaded with AC099850.3 siRNA and sorafenib (SF) enhance combined therapy for HBV-HCC.

Area of Science:

  • Oncology
  • Molecular Biology
  • Nanomedicine

Background:

  • Hepatocellular carcinoma (HCC) associated with Hepatitis B virus (HBV) remains a significant health challenge.
  • Investigating molecular mechanisms is crucial for developing effective therapeutic strategies against HBV-HCC.
  • Novel drug delivery systems are needed to improve treatment efficacy.

Purpose of the Study:

  • To elucidate the molecular role of AC099850.3 in the development of HBV-HCC.
  • To evaluate the therapeutic potential of AC099850.3 siRNA and sorafenib (SF) delivered via pH-triggered nanoparticles (CC@AC&SF@PP NPs).
  • To assess the combined therapeutic effect on HBV-HCC.

Main Methods:

  • Bioinformatic analysis of TCGA and ImmPort databases to identify survival-related immune genes and construct a prognostic risk model.
  • In vitro studies using HepG2.2.15 cells to investigate the function of AC099850.3, including proliferation, invasion, cell cycle, and immune checkpoint CD276 expression.
  • In vivo experiments using mouse models to assess the effect of AC099850.3 on tumor growth and the therapeutic efficacy of CC@AC&SF@PP NPs.

Main Results:

  • A prognostic risk model was established, identifying AC099850.3 as a key gene.
  • AC099850.3 was found to promote HepG2.2.15 cell proliferation and invasion by upregulating CD276 and accelerating cell cycle progression.
  • AC099850.3 promoted HBV-HCC tumor growth in vivo, and CC@AC&SF@PP NPs enhanced the combined therapy's effectiveness.

Conclusions:

  • AC099850.3 accelerates cell cycle progression and promotes HBV-HCC development by upregulating immune checkpoint CD276.
  • CC@AC&SF@PP NPs loaded with AC099850.3 siRNA and SF demonstrate improved therapeutic efficacy for HBV-HCC.
  • This study provides a novel therapeutic strategy for HBV-HCC using targeted nanoparticle delivery.