Neurofunctional test batteries in safety pharmacology - Current and emerging considerations for the drug development
Samuel J Jackson1, Simon Authier2, Henning Brohmann3
1The National Centre for the Replacement, Refinement and Reduction of Animals in Research, Gibbs Building, 215 Euston Road, London NW1 2BE, United Kingdom.
Abstract:
Regulatory guidelines recommend specialised safety pharmacology assessments in animals to characterise drug-induced effects on the central nervous system (CNS) prior to first-in-human trials, including the functional observational battery or Irwin test (here collectively termed neurofunctional assessments). These assessments effectively detect overtly neurotoxic drugs; however, the suitability of the in vivo assessments to readily detect more subtle drug effects on the nervous system has been questioned. A survey was formulated by an international expert working group convened by the (NC3Rs) to capture practice in CNS neurofunctional assessment tests and opinions on the perceived impact of in vivo test battery endpoints. Impact was defined as "the impact of measures alone/in combination on decision making in drug development or candidate selection when using the neurofunctional assessment". The results demonstrate that rodents are predominantly used for small molecule assessments, whereas non-rodents are frequently used to test biotherapeutics. Practice varied between respondents in terms of experimental design. Subsets of test battery endpoints were consistently considered highly impactful (e.g. convulsions, stereotypic behaviors); however, the perceived impact level of other endpoints varied depending whether drugs were designed for CNS targets. Many endpoints were considered to have no or minimal impact, whereas a subset of endpoints in CNS test batteries appears more impactful than others. A critical evaluation is required to assess whether the translational value of CNS in vivo safety pharmacology assessments could be increased by modifying or augmenting standard CNS test batteries. A revised approach to CNS safety assessment has the potential to reduce animal numbers without compromising patient safety.
Insights
Safety pharmacology assessments using neurofunctional tests in animals help detect drug effects on the central nervous system (CNS). A survey revealed varied practices and highlighted specific impactful endpoints for better drug development decisions.
Area of Science:
- Pharmacology
- Neuroscience
- Drug Development
Background:
- Regulatory guidelines mandate specialized safety pharmacology assessments for central nervous system (CNS) effects before human trials.
- Current in vivo neurofunctional assessments, like the Irwin test, effectively identify overt neurotoxicity but may miss subtle drug effects.
- The suitability of existing in vivo test batteries for detecting nuanced CNS drug effects has been questioned.
Purpose of the Study:
- To survey international expert practices in CNS neurofunctional assessment tests.
- To gather opinions on the perceived impact of various in vivo test battery endpoints on drug development decision-making.
- To identify areas for improving the translational value of CNS safety pharmacology assessments.
Main Methods:
- An international expert working group formulated a survey.
- The survey captured current practices in CNS neurofunctional assessment tests.
- Opinions on the impact of specific test battery endpoints were collected.
Main Results:
- Rodents are predominantly used for small molecule assessments, while non-rodents are used for biotherapeutics.
- Experimental designs and endpoint impact varied among respondents.
- Specific endpoints like convulsions and stereotypic behaviors were consistently deemed highly impactful.
Conclusions:
- A subset of CNS test battery endpoints appears more impactful than others.
- Critical evaluation is needed to enhance the translational value of in vivo safety pharmacology assessments.
- Revised approaches may reduce animal use without compromising patient safety.
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