Literature DB >> 35559879

Occupational risk of nano-biomaterials: Assessment of nano-enabled magnetite contrast agent using the BIORIMA Decision Support System.

V Cazzagon1, E Giubilato2, L Pizzol3, C Ravagli4, S Doumett4, G Baldi4, M Blosi5, A Brunelli1, C Fito6, F Huertas6, A Marcomini1, E Semenzin1, A Zabeo3, I Zanoni5, D Hristozov7.   

Abstract

The assessment of the safety of nano-biomedical products for patients is an essential prerequisite for their market authorization. However, it is also required to ensure the safety of the workers who may be unintentionally exposed to the nano-biomaterials (NBMs) in these medical applications during their synthesis, formulation into products and end-of-life processing and also of the medical professionals (e.g., nurses, doctors, dentists) using the products for treating patients. There is only a handful of workplace risk assessments focussing on NBMs used in medical applications. Our goal is to contribute to increasing the knowledge in this area by assessing the occupational risks of magnetite (Fe3O4) nanoparticles coated with PLGA-b-PEG-COOH used as contrast agent in magnetic resonance imaging (MRI) by applying the software-based Decision Support System (DSS) which was developed in the EU H2020 project BIORIMA. The occupational risk assessment was performed according to regulatory requirements and using state-of-the-art models for hazard and exposure assessment, which are part of the DSS. Exposure scenarios for each life cycle stage were developed using data from literature, inputs from partnering industries and results of a questionnaire distributed to healthcare professionals, i.e., physicians, nurses, technicians working with contrast agents for MRI. Exposure concentrations were obtained either from predictive exposure models or monitoring campaigns designed specifically for this study. Derived No-Effect Levels (DNELs) were calculated by means of the APROBA tool starting from in vivo hazard data from literature. The exposure estimates/measurements and the DNELs were used to perform probabilistic risk characterisation for the formulated exposure scenarios, including uncertainty analysis. The obtained results revealed negligible risks for workers along the life cycle of magnetite NBMs used as contrast agent for the diagnosis of tumour cells in all exposure scenarios except in one when risk is considered acceptable after the adoption of specific risk management measures. The study also demonstrated the added value of using the BIORIMA DSS for quantification and communication of occupational risks of nano-biomedical applications and the associated uncertainties.
Copyright © 2022 The Authors. Published by Elsevier B.V. All rights reserved.

Entities:  

Keywords:  Decision Support System; Magnetite nanoparticles; Nano-biomaterials; Occupational risk assessment

Mesh:

Substances:

Year:  2021        PMID: 35559879     DOI: 10.1016/j.impact.2021.100373

Source DB:  PubMed          Journal:  NanoImpact        ISSN: 2452-0748


  2 in total

1.  A Decision Support System for preclinical assessment of nanomaterials in medical products: the REFINE DSS.

Authors:  Alex Zabeo; Fabio Rosada; Lisa Pizzol; Fanny Caputo; Sven Even Borgos; Jeremie Parot; Robert E Geertsma; Joost Jacob Pouw; Rob J Vandebriel; Oihane Ibarrola Moreno; Danail Hristozov
Journal:  Drug Deliv Transl Res       Date:  2022-05-10       Impact factor: 5.671

2.  Pre-validation of a reporter gene assay for oxidative stress for the rapid screening of nanobiomaterials.

Authors:  Sebastin Martin; Laura de Haan; Ignacio Miro Estruch; Kai Moritz Eder; Anne Marzi; Jürgen Schnekenburger; Magda Blosi; Anna Costa; Giulia Antonello; Enrico Bergamaschi; Chiara Riganti; David Beal; Marie Carrière; Olivier Taché; Gary Hutchison; Eva Malone; Lesley Young; Luisa Campagnolo; Fabio La Civita; Antonio Pietroiusti; Stéphanie Devineau; Armelle Baeza; Sonja Boland; Cai Zong; Gaku Ichihara; Bengt Fadeel; Hans Bouwmeester
Journal:  Front Toxicol       Date:  2022-09-05
  2 in total

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