Publication Details

Category Text Publication
Reference Category Journals
DOI 10.1021/acs.est.5c14563
Licence creative commons licence
Title (Primary) "The dose makes the poison": Relevance of Paracelsus's principle for modern chemical hazard assessment with new approach methodologies
Author Escher, B.I. ORCID logo
Source Titel Environmental Science & Technology
Year 2026
Department ZELLTOX
Volume 60
Issue 3
Page From 2277
Page To 2290
Language englisch
Topic T9 Healthy Planet
Keywords Hazard; green toxicology; safe and sustainable by design; New Approach Methodologies; in vitro bioassay; persistence; baseline toxicity; adverse outcome pathway
Abstract New approach methodologies (NAMs) including in vitro assays and in silico prediction methods that are based on mechanistic understanding of the pathways of toxicity have changed how we nowadays assess the hazard and risk of chemicals in commerce. Quantitative dose–response relationships obtained from NAMs are often dichotomized into categorical outcomes (toxic/nontoxic), introducing uncertainty and potential misclassification in hazard characterization because the applicability domain of NAMs is currently constrained to the medium-hydrophobicity segment of the chemical universe. Until physicochemical limitations to the testability of (super)hydrophobic chemicals are overcome and hydrophilic and charged chemicals are tested at higher doses than is present practice, “no response” should not be equated with an absence of toxicity. Toxicity is not categorical─it is the dose that makes the poison. Data gaps for difficult-to-test chemicals can be filled with baseline toxicity predictions. Baseline toxicity is the minimum toxicity, but it is often a robust predictor. Persistence constitutes a hazard criterion in its own right. Combining persistence with toxicity into a “persistent toxicity” metric may provide a more integrative indicator of the hazard potential. Persistent toxicity indicators measured with NAMs could play a pivotal role in comparative hazard assessment for substitution chemicals and the development of safe and sustainable by design (SSbD) chemicals.
Escher, B.I. (2026):
"The dose makes the poison": Relevance of Paracelsus's principle for modern chemical hazard assessment with new approach methodologies
Environ. Sci. Technol. 60 (3), 2277 - 2290
10.1021/acs.est.5c14563