Utility of In Vitro Bioactivity as a Lower Bound Estimate of In Vivo Adverse Effect Levels and in Risk-Based Prioritization.

Clicks: 360
ID: 46856
2019
Use of high-throughput, in vitro bioactivity data in setting a point-of-departure (POD) has the potential to accelerate the pace of human health safety evaluation by informing screening level assessments. The primary objective of this work was to compare PODs based on high-throughput predictions of bioactivity, exposure predictions, and traditional hazard information for 448 chemicals. PODs derived from new approach methodologies (NAMs) were obtained for this comparison using the 50th (PODNAM,50) and the 95th (PODNAM,95) percentile credible interval estimates for the steady-state plasma concentration used in in vitro to in vivo extrapolation of administered equivalent doses (AEDs). Of the 448 substances, 89% had a PODNAM,95 that was less than the traditional POD (PODtraditional) value. For the 48 substances for which PODtraditional < PODNAM,95, the PODNAM and PODtraditional were typically within a factor of 10 of each other, and there was an enrichment of chemical structural features associated with organophosphate and carbamate insecticides. When PODtraditional < PODNAM,95, it did not appear to result from an enrichment of PODtraditional based on a particular study type, (e.g. developmental, reproductive, chronic studies). Bioactivity:exposure ratios (BERs), useful for identification of substances with potential priority, demonstrated that high-throughput exposure predictions were greater than the PODNAM,95 for 11 substances. When compared to threshold of toxicological concern (TTC) values, the PODNAM,95 was greater than the corresponding TTC value 90% of the time. This work demonstrates the feasibility, and continuing challenges, of using in vitro bioactivity as a protective estimate of POD in screening level assessments via a case study.
Reference Key
friedman2019utilitytoxicological Use this key to autocite in the manuscript while using SciMatic Manuscript Manager or Thesis Manager
Authors Friedman, Katie Paul;Gagne, Matthew;Loo, Lit-Hsin;Karamertzanis, Panagiotis;Netzeva, Tatiana;Sobanski, Tomasz;Franzosa, Jill;Richard, Ann;Lougee, Ryan;Gissi, Andrea;Lee, Jia-Ying Joey;Angrish, Michelle;Dorne, Jean-Lou;Foster, Stiven;Raffaele, Kathleen;Bahadori, Tina;Gwinn, Maureen;Lambert, Jason;Whelan, Maurice;Rasenberg, Mike;Barton-Maclaren, Tara;Thomas, Russell S;
Journal toxicological sciences : an official journal of the society of toxicology
Year 2019
DOI kfz201
URL
Keywords

Citations

No citations found. To add a citation, contact the admin at info@scimatic.org

No comments yet. Be the first to comment on this article.