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From papers to RDF-based integration of physicochemical data and adverse outcome pathways for nanomaterials

delete2024-05-01
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V
van Rijn, Jeaphianne P. M.
M
Marvin Martens
A
Ammar Ammar
M
Mihaela Roxana Cimpan
V
Valérie Fessard
P
Peter Hoet
N
Nina Jeliazkova
S
Sivakumar Murugadoss
I
Ivana Vinković Vrček
E
Egon Willighagen *
DOI:10.1186/s13321-024-00833-0delete
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Abstract

Abstract

En 中文
Adverse Outcome Pathways (AOPs) have been proposed to facilitate mechanistic understanding of interactions of chemicals/materials with biological systems. Each AOP starts with a molecular initiating event (MIE) and possibly ends with adverse outcome(s) (AOs) via a series of key events (KEs). So far, the interaction of engineered nanomaterials (ENMs) with biomolecules, biomembranes, cells, and biological structures, in general, is not yet fully elucidated. There is also a huge lack of information on which AOPs are ENMs-relevant or -specific, despite numerous published data on toxicological endpoints they trigger, such as oxidative stress and inflammation. We propose to integrate related data and knowledge recently collected. Our approach combines the annotation of nanomaterials and their MIEs with ontology annotation to demonstrate how we can then query AOPs and biological pathway information for these materials. We conclude that a FAIR (Findable, Accessible, Interoperable, Reusable) representation of the ENM-MIE knowledge simplifies integration with other knowledge.
Keywords:
Nanosafety
Resource description framework
Adverse outcome pathways
Engineered nanomaterials
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Journal

Journal of Cheminformatics cover
Journal of Cheminformatics
IF:
5.7
Papers:
1.4K
Citations:
1.1W

Organization

L
laboratoire de fougeres
Scholars:
108
Papers: 71
Citations: 0
M
Maastricht University
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3.1W
Papers: 2.8W
Citations: 277
U
university of bergen
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2.0W
Papers: 1.7W
Citations: 19
K
KU Leuven
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Papers: 5.2W
Citations: 8.1W
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