Chiral polymer modified nanoparticles selectively induce autophagy of cancer cells for tumor ablation

Long Yuan1, Fan Zhang1, Xiaowei Qi1

  • 1Department of Breast Surgery, Southwest Hospital, Third Military Medical University (Army Medical University), Chongqing, 400038, China.

Abstract

Insights

Chiral polymer-coated gold nanoparticles (PAV-AuNPs) selectively induce autophagy in cancer cells, suppressing tumor growth with minimal toxicity. This stereospecific approach offers a new strategy for developing targeted autophagy-associated cancer therapies.

Area of Science:

  • Nanotechnology
  • Biomedical Engineering
  • Materials Science

Background:

  • Autophagy regulation via exogenous materials is crucial for disease treatment.
  • Selective control of autophagy remains a challenge for therapeutic applications.

Purpose of the Study:

  • To investigate the chirality-selective effects of poly (acryloyl-L, D and racemic valine) anchored on gold nanoparticles (PAV-AuNPs) on autophagy activation.
  • To evaluate the therapeutic potential of these nanoparticles in cancer treatment.

Main Methods:

  • Synthesis of L-PAV-AuNPs, D-PAV-AuNPs, and L/D-PAV-AuNPs.
  • Assessment of cytotoxicity and autophagy induction in MDA-MB-231 cancer cells and normal cells (3T3 fibroblasts, HBL-100).
  • In vitro and in vivo evaluation of tumor suppression and toxicity.

Main Results:

  • PAV-AuNPs exhibited chirality-dependent cytotoxicity, primarily through autophagy induction in cancer cells.
  • D-PAV-AuNPs showed high autophagy-inducing activity in MDA-MB-231 cells, with minimal impact on normal cells.
  • Intratumoral injection of D-PAV-AuNPs suppressed tumor growth with negligible in vivo toxicity.

Conclusions:

  • Chiral polymer-coated nanoparticles can selectively induce autophagy in cancer cells, leading to high tumor eradication efficiency.
  • This study introduces a novel class of stereospecific nanoagents for autophagy-associated tumor treatment.
  • The findings open new avenues for developing targeted nanotherapies for cancer.

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