Liposomal pravastatin inhibits tumor growth by targeting cancer-related inflammation

Maria Coimbra1, Manuela Banciu, Marcel H A M Fens

  • 1Pharmaceutics, Utrecht Institute for Pharmaceutical Sciences, Dept. of Pharmaceutical Sciences, Faculty of Science, Utrecht University, Utrecht, The Netherlands.

Insights

Targeted delivery of statins using liposomes enhances their anticancer effects by increasing local drug concentration and modulating immune responses. This approach significantly inhibits tumor growth and inflammation, unlike free statins.

Area of Science:

  • Oncology
  • Pharmacology
  • Immunology

Background:

  • Tumor microenvironments exhibit chronic inflammation, presenting a target for novel antitumor therapies.
  • Statins possess anti-inflammatory and immunomodulatory properties beyond cholesterol reduction, primarily through altering GTP-binding protein modifications.
  • High doses of statins are required for anticancer effects, necessitating targeted delivery strategies to improve efficacy and minimize systemic exposure.

Purpose of the Study:

  • To investigate the tumor-specific delivery of pravastatin using small, long-circulating liposomes.
  • To evaluate the efficacy of liposomal pravastatin in inhibiting tumor growth and modulating the tumor microenvironment.

Main Methods:

  • In vitro studies assessed the effects of liposomal and free pravastatin on tumor cells, endothelial cells, and macrophages.
  • In vivo studies utilized liposome-encapsulated pravastatin in a murine B16F10-melanoma model.
  • Drug concentration in tumors and serum cholesterol levels were measured post-treatment.
  • Analysis of pro-inflammatory/pro-angiogenic mediators and MHC class I expression in tumor tissues.

Main Results:

  • Liposomal pravastatin significantly inhibited murine melanoma growth (>70%), while free pravastatin was ineffective.
  • Macrophages were identified as the most sensitive cell type to liposomal pravastatin in vitro.
  • Higher concentrations of pravastatin were recovered from tumors treated with liposomal formulation compared to free drug.
  • Liposomal pravastatin suppressed pro-inflammatory/pro-angiogenic mediators and increased MHC class I expression in tumors.

Conclusions:

  • Targeted delivery of statins via liposomes enhances antitumor activity by increasing local drug concentration and modulating macrophage function.
  • Liposomal pravastatin effectively inhibits tumor inflammation and stimulates an antitumor immune response.
  • This strategy offers a promising approach for improving statin-based cancer therapy.

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