Addressing Immune Response Dysfunction in an Integrated Approach for Testing and Assessment for Non-Genotoxic

Annamaria Colacci1,2, Emanuela Corsini3, Miriam Naomi Jacobs4

  • 1Agency for Prevention, Environment and Energy, Emilia-Romagna (Arpae), Via Po 5, 40139 Bologna, Italy.

Insights

Non-genotoxic carcinogens (NGTxC) can impair immune function, leading to cancer. This review explores immune dysfunction mechanisms and biomarkers for regulatory assessment of NGTxC.

Area of Science:

  • Toxicology
  • Immunology
  • Carcinogenesis

Background:

  • Chemical carcinogens typically induce DNA damage, but non-genotoxic carcinogenic (NGTxC) mechanisms also exist.
  • Immune dysfunction, including immunotoxicity and immune evasion, is a key event modulated by NGTxCs.
  • The immune system is crucial for detecting and eliminating transformed cells.

Purpose of the Study:

  • To review key events of immune dysfunction related to NGTxC.
  • To identify molecular players disrupting anti-cancer immune signaling pathways.
  • To assess regulatory applicability of current test methods and biomarkers for NGTxC.

Main Methods:

  • Literature review focusing on immune dysfunction mechanisms and NGTxC.
  • Analysis of molecular pathways involving cytokines and the Aryl hydrocarbon Receptor.
  • Evaluation of biomarkers from cancer biopsy studies for regulatory use.

Main Results:

  • Key immune dysfunction events include immunotoxicity, immune evasion, and suppression.
  • Cytokines and the Aryl hydrocarbon Receptor are critical in NGTxC-mediated immune disruption.
  • Biomarkers such as MAPK, PD-L1, TILs, Tregs, and cytokines (IL-17, TNFα) are identified.

Conclusions:

  • Understanding NGTxC-induced immune dysfunction is vital for chemical hazard assessment.
  • An integrated testing and assessment approach is proposed for NGTxC regulation.
  • Biomarker validation is crucial for regulatory application in NGTxC identification.