Stem cell-based approaches for developmental neurotoxicity testing.

Front Toxicol

Department of Bioengineering, Santa Clara University, Santa Clara, CA, United States.

Published: August 2024

Neurotoxicants are substances that can lead to adverse structural or functional effects on the nervous system. These can be chemical, biological, or physical agents that can cross the blood brain barrier to damage neurons or interfere with complex interactions between the nervous system and other organs. With concerns regarding social policy, public health, and medicine, there is a need to ensure rigorous testing for neurotoxicity. While the most common neurotoxicity tests involve using animal models, a shift towards stem cell-based platforms can potentially provide a more biologically accurate alternative in both clinical and pharmaceutical research. With this in mind, the objective of this article is to review both current technologies and recent advancements in evaluating neurotoxicants using stem cell-based approaches, with an emphasis on developmental neurotoxicants (DNTs) as these have the most potential to lead to irreversible critical damage on brain function. In the next section, attempts to develop novel predictive model approaches for the study of both neural cell fate and developmental neurotoxicity are discussed. Finally, this article concludes with a discussion of the future use of methods within developmental neurotoxicity testing, and the role of regulatory bodies in promoting advancements within the space.

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http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11374538PMC
http://dx.doi.org/10.3389/ftox.2024.1402630DOI Listing

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