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  4. An Alternative Safety Profiling Algorithm (ASPA) to transform next generation risk assessment into a structured and transparent process
 
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2026
Journal Article
Title

An Alternative Safety Profiling Algorithm (ASPA) to transform next generation risk assessment into a structured and transparent process

Abstract
Next generation risk assessment (NGRA) strategies use animal-free new approach methodol­ogies (NAMs) to generate information concerning chemical hazard, toxicokinetics (ADME), and exposure. The information from these major pillars of data gathering is used to inform risk assessment and classification decisions. While the required types of data are widely agreed upon, the pro­cesses for data collection, integration and reporting, as well as several decisions on the depth and granularity of required data, are poorly standardized. Here, we present the Alternative Safety Pro­filing Algorithm (ASPA), a broad-purpose, transparent, and reproducible risk assessment workflow that allows documentation and integration of all types of information required for NGRA. ASPA aims to make safety assessments fully traceable for the recipient (e.g., a regulator), delineating which steps and decisions have led to the final outcome and why certain decisions were made. An overarching objective of ASPA is to ensure that identical data input yields identical outcomes in the hands of independent assessors. Therefore, ASPA is not just a data gathering workflow; it also considers data interdependencies and requires precise justification of intermediate decisions. This includes the monitoring and assessment of uncertainties. To assist users, the ASPA-assist software was developed. It formalizes the reporting process in a reproducible and standardized fashion. By guiding an operator step-by-step through the ASPA workflow, a complete and comprehensive report is assembled, whereby all data, methods, operator activities, and intermediate decisions are recorded. Practical examples illustrating the broader applicability of ASPA across various regula­tions and problem formulations are provided through case studies.
Author(s)
Leist, Marcel
Universität Konstanz
Tangianu, Silvia
Universität Konstanz
Affourtit, Femke
Rijksinstituut voor Volksgezondheid en Milieu
Braakhuis, Hedwig M.
Nederlandse Organisatie voor toegepast natuurwetenschappelijk onderzoek- TNO
Colbourne, John Kenneth
University of Birmingham
Cöllen, Eike
Universität Konstanz
Dreser, Nadine
Universität Konstanz
Escher, Sylvia  
Fraunhofer-Institut für Toxikologie und Experimentelle Medizin ITEM  
Gardner, Iain B.
Certara, United Kingdom
Hahn, Stefan  
Fraunhofer-Institut für Toxikologie und Experimentelle Medizin ITEM  
Hardy, Barry
Edelweiss Connect GmbH
Herzler, Matthias
Bundesinstitut für Risikobewertung
Islam, Barira K.
Certara, United Kingdom
Kamp, Hennicke G.
BASF Metabolome Solutions GmbH
Magel, Viktoria
Universität Konstanz
Marx-Stoelting, Philip
Bundesinstitut für Risikobewertung
Moné, Martijn J.
Leiden Academic Centre for Drug Research
Lundquist, Patrik
Uppsala Universitet
Ottenbros, Ilse B.
Nederlandse Organisatie voor toegepast natuurwetenschappelijk onderzoek- TNO
Ouédraogo, Gladys D.
L'Oréal S.A.
Pallocca, Giorgia
Humane World for Animals Europe
van de Water, Bob
Leiden Academic Centre for Drug Research
Vinken, Mathieu
Vrije Universiteit Brussel
White, Andrew J.
Sharnbrook
Pastor, Manuel
Universitat Pompeu Fabra Barcelona
Luijten, Mirjam
Rijksinstituut voor Volksgezondheid en Milieu
Journal
Alternatives to animal experimentation : ALTEX  
Open Access
File(s)
Download (1.83 MB)
Rights
CC BY 4.0: Creative Commons Attribution
DOI
10.14573/altex.2509081
10.24406/publica-7292
Additional link
Full text
Language
English
Fraunhofer-Institut für Toxikologie und Experimentelle Medizin ITEM  
Keyword(s)
  • data integration

  • exposure

  • hazard

  • NAM

  • NGRA

  • risk assessment

  • toxicokinetics

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