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Towards a non-animal risk assessment for anti-androgenic effects in humans
Matthew P Dent1, Paul L Carmichael1, Kevin C Jones2
1Safety and Environmental Assurance Centre, Unilever Colworth Science Park, Bedfordshire MK44 1LQ, UK.
Abstract:
Toxicology testing is undergoing a transformation from a system based on high-dose studies in laboratory animals to one founded primarily on in vitro methods that evaluate changes in normal cellular signalling pathways using human-relevant cells or tissues. We review the tools and approaches that could be used to develop a non-animal safety assessment for anti-androgenic effects in humans, with a focus on the molecular initiating events (MIEs) that human disorders indicate critical for normal functioning of the hypothalamus-pituitary-testicular (HPT) axis. In vitro test systems exist which can be used to characterize the effects of test chemicals on some MIEs such as androgen receptor antagonism, inhibition of steroidogenic enzymes or 5α-reductase inhibition. When used alongside information describing the pharmacokinetics of a specific chemical exposure, these could be used to inform a pathways-based safety assessment. However, some parts of the HPT axis such as events occurring in the hypothalamus or pituitary are not well represented by accepted in vitro methods. In vitro tools to characterize perturbations in these events need to be developed before a fully integrated model of the HPT axis can be described. Knowledge gaps also exist which prevent us from using in vitro data to predict the type and severity of in vivo effect(s) that could arise from a given level of in vitro anti-androgenic activity. This means that more work is needed to reliably link an MIE with an adverse outcome. However, especially for chemicals with low anti-androgenic activity, human exposure data can be used to put in vitro mode of action data into context for risk-based safety decision-making.
Insights
New toxicology methods use in vitro assays to assess anti-androgenic effects, moving away from animal testing. While current tools evaluate some molecular initiating events (MIEs), further development is needed for a complete human safety assessment.
Area of Science:
- Toxicology
- Endocrinology
- In Vitro Assays
Background:
- Traditional toxicology relies on high-dose animal studies.
- A shift towards in vitro methods using human cells is occurring.
- Focus is on cellular signaling pathways for safety assessment.
Purpose of the Study:
- Review tools for non-animal safety assessment of anti-androgenic effects.
- Focus on molecular initiating events (MIEs) critical for the hypothalamus-pituitary-testicular (HPT) axis.
- Identify gaps in current in vitro methods for HPT axis assessment.
Main Methods:
- Review of existing in vitro test systems.
- Evaluation of tools for characterizing MIEs like androgen receptor antagonism and enzyme inhibition.
- Consideration of pharmacokinetic data for safety assessment.
Main Results:
- In vitro systems can assess some MIEs related to anti-androgenic effects.
- Current in vitro methods do not fully represent all parts of the HPT axis (hypothalamus, pituitary).
- Knowledge gaps exist in linking in vitro data to in vivo adverse outcomes.
Conclusions:
- Further development of in vitro tools is required for a comprehensive HPT axis model.
- More research is needed to reliably connect MIEs with adverse outcomes.
- Human exposure data can contextualize in vitro findings for risk assessment, especially for low-activity chemicals.
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