The Challenges and Emerging Opportunities of Targeting Cytokines and Chemokine-Driven Inflammatory Signals in

David J J Waugh1, Jacqui A McGovern1, Suzanne McCusker1

  • 1Centre for Biomedical Technology, School of Biomedical Sciences, Faculty of Health, Queensland University of Technology, and Translational Research Institute, Wooloongabba, Brisbane, Queensland, Australia 4000.

Insights

Targeting inflammation in prostate cancer (PCa) is crucial. New therapies combining cytokine/chemokine inhibitors with other treatments show promise for improving outcomes in advanced, heterogeneous PCa.

Area of Science:

  • Oncology
  • Immunology
  • Cancer Biology

Background:

  • Inflammation drives prostate cancer (PCa) initiation and progression.
  • Dysregulated cytokine and chemokine signaling within the tumor microenvironment (TME) is critical for PCa.
  • Past anti-inflammation strategies for PCa yielded limited clinical benefits.

Purpose of the Study:

  • To explore novel strategies for disrupting cytokine and chemokine signaling in the TME for advanced PCa.
  • To investigate the role of myeloid cells in castrate resistance and poor immunotherapy response in PCa.
  • To identify opportunities for combination therapies targeting inflammation in PCa.

Main Methods:

  • Focus on cytokine/chemokine-directed therapies.
  • Combination of therapies with androgen signaling inhibitors or immunotherapy.
  • Consideration of the tumor's genetic context and biomarker-guided patient selection.

Main Results:

  • Molecular-targeted agents can disrupt cytokine/chemokine signaling pathways.
  • These targeted agents can mitigate biological redundancy in signaling.
  • Precision-based trials are essential for evaluating new therapeutic strategies.

Conclusions:

  • Targeting cytokine and chemokine signaling offers a promising avenue for advanced PCa treatment.
  • Combination therapies tailored to genetic context and biomarkers can improve outcomes.
  • Developing diverse therapeutic agents is necessary to transform outcomes for incurable, heterogeneous PCa.

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