Is current risk assessment of non-genotoxic carcinogens protective?

Hedwig M Braakhuis1, Wout Slob2, Evelyn D Olthof1

  • 1a Centre for Health Protection , National Institute for Public Health and the Environment (RIVM) , Bilthoven , The Netherlands.

Insights

Current risk assessments for non-genotoxic carcinogens (NGTXCs) may not fully protect against cancer. Health-based guidance values derived from rodent studies suggest an average 1% cancer risk, prompting a reevaluation of safety standards.

Area of Science:

  • Toxicology and Chemical Risk Assessment
  • Carcinogenesis and Mutagenesis
  • Regulatory Science

Background:

  • Non-genotoxic carcinogens (NGTXCs) induce cancer through mechanisms other than direct DNA damage.
  • Regulatory frameworks like REACH limit carcinogenicity studies, often relying on subchronic toxicity data for NGTXCs.
  • Health-based guidance values (HBGVs) for NGTXCs are typically derived from No-Observed-Adverse-Effect Levels (NOAELs).

Purpose of the Study:

  • To evaluate the protective capacity of current risk assessment practices for NGTXCs based on NOAELs.
  • To compare NOAELs from subchronic studies with those from carcinogenicity studies for NGTXCs.
  • To determine the associated cancer risk implied by existing HBGVs for NGTXCs.

Main Methods:

  • Benchmark doses (BMDs) were estimated for carcinogenicity data of 44 known NGTXCs.
  • BMDs were compared against NOAELs derived from both carcinogenicity and subchronic toxicity studies.
  • Analysis focused on the relationship between NOAELs and cancer risk in rodent models.

Main Results:

  • NOAELs from subchronic studies were found to be comparable to cancer-derived NOAELs, supporting current regulatory approaches.
  • Both subchronic and cancer-derived NOAELs were associated with an average rodent cancer risk of approximately 1%.
  • This suggests that current risk assessment for NGTXCs might not be fully protective against potential human carcinogenicity.

Conclusions:

  • The study supports the current practice of using subchronic NOAELs in REACH assessments for NGTXCs.
  • A potential 1% cancer risk in rodents associated with current HBGVs necessitates a broader scientific and stakeholder discussion.
  • There is a need to re-evaluate the acceptability of cancer risk levels derived from current NGTXC risk assessment methodologies.

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