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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.
Abstract:
Non-genotoxic carcinogens (NGTXCs) do not cause direct DNA damage but induce cancer via other mechanisms. In risk assessment of chemicals and pharmaceuticals, carcinogenic risks are determined using carcinogenicity studies in rodents. With the aim to reduce animal testing, REACH legislation states that carcinogenicity studies are only allowed when specific concerns are present; risk assessment of compounds that are potentially carcinogenic by a non-genotoxic mode of action is usually based on subchronic toxicity studies. Health-based guidance values (HBGVs) of NGTXCs may therefore be based on data from carcinogenicity or subchronic toxicity studies depending on the legal framework that applies. HBGVs are usually derived from No-Observed-Adverse-Effect-Levels (NOAELs). Here, we investigate whether current risk assessment of NGTXCs based on NOAELs is protective against cancer. To answer this question, we estimated Benchmark doses (BMDs) for carcinogenicity data of 44 known NGTXCs. These BMDs were compared to the NOAELs derived from the same carcinogenicity studies, as well as to the NOAELs derived from the associated subchronic studies. The results lead to two main conclusions. First, a NOAEL derived from a subchronic study is similar to a NOAEL based on cancer effects from a carcinogenicity study, supporting the current practice in REACH. Second, both the subchronic and cancer NOAELs are, on average, associated with a cancer risk of around 1% in rodents. This implies that for those chemicals that are potentially carcinogenic in humans, current risk assessment of NGTXCs may not be completely protective against cancer. Our results call for a broader discussion within the scientific community, followed by discussions among risk assessors, policy makers, and other stakeholders as to whether or not the potential cancer risk levels that appear to be associated with currently derived HBGVs of NGXTCs are acceptable.
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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