Targeting Triple Negative Breast Cancer With Oncolytic Adenoviruses

Gabriela Green-Tripp1, Callum Nattress1,2, Gunnel Halldén1

  • 1Centre for Biomarkers and Biotherapeutics, Barts Cancer Institute, Queen Mary University of London, London, United Kingdom.

Insights

Oncolytic adenoviruses (OAds) show promise in treating triple-negative breast cancer (TNBC) by selectively destroying cancer cells and activating immune responses. Combinations with existing therapies enhance efficacy, offering new hope for improved patient outcomes.

Area of Science:

  • Oncolytic virotherapy
  • Cancer immunology
  • Breast cancer therapeutics

Background:

  • Breast cancer (BC) is a leading cause of cancer death globally.
  • Triple-negative breast cancer (TNBC) lacks effective targeted therapies and has a poor prognosis.
  • Current TNBC treatments face challenges with resistance and limited efficacy.

Purpose of the Study:

  • To review the potential of oncolytic adenoviruses (OAds) as a novel therapeutic strategy for TNBC.
  • To evaluate OAds efficacy in preclinical and clinical settings, alone and in combination therapies.
  • To discuss OAds' mechanisms, limitations, and future directions for improving patient outcomes.

Main Methods:

  • Review of preclinical studies on OAds in TNBC cell lines and xenografts.
  • Analysis of clinical trial data for OAds in various cancers, including breast cancer.
  • Examination of OAds combined with standard treatments, targeted agents (EGFR, AR, PARP inhibitors), and immunotherapies.

Main Results:

  • OAds demonstrate selective tumor lysis and immune response recruitment in TNBC models.
  • Combinations of OAds with PARP inhibitors (e.g., Olaparib) show enhanced anti-tumor effects.
  • OAds combined with immune checkpoint inhibitors or cytokine expression show promising results.

Conclusions:

  • OAds represent a promising new therapeutic avenue for TNBC and other breast cancers.
  • Combination strategies significantly enhance OAds' anti-tumor activity and therapeutic potential.
  • Further research is needed to optimize OAds for metastatic disease, immune activation, and intratumoral spread.

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