Article (Scientific journals)
Mapping physiology: a systems biology approach for the development of alternative methods in toxicology
Staumont, Bernard; Maia Ladeira, Luiz Carlos; Gamba, Alessio et al.
2025In ALTEX: Alternatives to Animal Experimentation
Editorial reviewed
 

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Keywords :
physiological map; standardized graphical representation; curated biochemical networks; conceptual in silicomodels; new approach methodology
Abstract :
[en] Chemical safety assessment still heavily relies on animal testing, presenting ethical dilemmas and limited human predictive value. New approach methodologies (NAMs), including in vitro and in silico techniques, offer alternative solutions. In silico toxicology has made progress in predicting chemical effects but frequently lacks biological mechanistic foundations. Recent developments focus on mechanistic understanding of adverse effects inflicted by chemicals, as embedded in (quantitative) adverse outcome pathways (AOPs). However, there is a demand for more detailed mechanistic insights at the gene and cell levels, encompassing both pathology and physiology. Drawing inspiration from the Disease Maps Project, this paper introduces Physiological Maps (PMs) as comprehensive graphical representations of biochemical processes related to specific organ functions. PMs are standardized using Systems Biology Graphical Notation and controlled vocabularies and annotations. Curation guidelines have been developed to ensure reproducibility and usability. This paper presents the methodology used to build PMs, emphasizing the essential collaboration between domain experts and curators. PMs offer user-friendly, standardized visualization for data analysis and educational purposes. Enabling a better understanding of (patho)physiology, they also complement and support the development of AOPs by providing detailed mechanistic information at the gene and cell level. Furthermore, PMs contribute to developing in vitro test batteries and to building (dynamic) in silico models aiming to predict the toxicity of chemicals. Collaborative efforts between the toxicology and systems biology communities are crucial for creating standardized and comprehensive PMs, supporting and accelerating the development of human-relevant NAMs for next-generation risk assessment.
Disciplines :
Life sciences: Multidisciplinary, general & others
Author, co-author :
Staumont, Bernard  ;  Université de Liège - ULiège > Département d'aérospatiale et mécanique > Génie biomécanique
Maia Ladeira, Luiz Carlos  ;  Université de Liège - ULiège > Département d'aérospatiale et mécanique > Génie biomécanique ; Université de Liège - ULiège > GIGA > GIGA Molecular & Computational Biology - Biomechanics & Computationel Tissues Engineering
Gamba, Alessio  ;  Université de Liège - ULiège > Département d'aérospatiale et mécanique > Génie biomécanique
Heusinkveld, Harm J
Piersma, Aldert
Fritsche, Ellen
Masereeuw, Rosalinde
Vanhaecke, Tamara
Teunis, Marc
Luechtefeld, Thomas
Hartung, Thomas
Jover, Ramiro
Vinken, Mathieu
Geris, Liesbet  ;  Université de Liège - ULiège > Département d'aérospatiale et mécanique > Génie biomécanique
More authors (4 more) Less
Language :
English
Title :
Mapping physiology: a systems biology approach for the development of alternative methods in toxicology
Publication date :
2025
Journal title :
ALTEX: Alternatives to Animal Experimentation
ISSN :
1868-596X
eISSN :
1868-8551
Publisher :
ALTEX Edition, Kuesnacht, Switzerland
Peer reviewed :
Editorial reviewed
Available on ORBi :
since 20 January 2025

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