Leveraging Evolutionary Immunology in Interleukin-6 and Interleukin-17 Signaling for Lung Cancer Therapeutics

Riya Khilwani1, Shailza Singh1

  • 1Systems Medicine Laboratory, BRIC-National Centre for Cell Science, NCCS Complex, Ganeshkhind, SPPU Campus, Pune 411007, India.

Insights

Interleukin-6 (IL-6) and Interleukin-17 (IL-17) cytokines paradoxically promote lung cancer by suppressing immune responses. Targeting conserved residues in these cytokines may offer novel therapeutic strategies against lung cancer.

Area of Science:

  • Oncology
  • Immunology
  • Evolutionary Biology

Background:

  • Lung cancer is a leading cause of cancer mortality, with rising incidences linked to treatment resistance.
  • Immune modulations and chemotherapeutic resistance contribute to increased lung cancer cases.
  • Interleukin-6 (IL-6) and Interleukin-17 (IL-17) are key cytokines involved in immune responses within malignant lung cells.

Purpose of the Study:

  • To investigate the role of IL-6 and IL-17 in lung cancer development and progression.
  • To explore the evolutionary relationships and structural characteristics of IL-6 and IL-17.
  • To identify potential therapeutic targets within these cytokines for lung cancer treatment.

Main Methods:

  • Analysis of cytokine signaling pathways in lung cancer.
  • Evolutionary modeling and statistical analysis of cytokine gene evolution.
  • Identification of conserved structural residues in IL-6 and IL-17.

Main Results:

  • Excessive IL-6 and IL-17 promote an immunosuppressive tumor microenvironment, enhancing cancer cell survival and metastasis.
  • These cytokines contribute to anti-apoptotic mechanisms and oncogenesis.
  • Evolutionary analysis revealed conserved structures and ancestral relationships between IL-6 and IL-17.

Conclusions:

  • IL-6 and IL-17 play a dual role in lung cancer, promoting tumor growth and immune evasion.
  • Conserved residues within IL-6 and IL-17 represent potential targets for therapeutic intervention.
  • Developing vaccines or peptide inhibitors targeting these conserved sites could offer new avenues for lung cancer treatment.

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