Simulated biological fluids - a systematic review of their biological relevance and use in relation to inhalation toxicology of particles and fibres.

Emma Innes,Humphrey H P Yiu,Polly McLean, William Brown,Matthew Boyles

Critical reviews in toxicology(2021)

引用 42|浏览4
暂无评分
摘要
The use of simulated biological fluids (SBFs) is a promising technique to better understand the release mechanisms and possible behaviour of materials, including fibres, metal-containing particles and nanomaterials. Applications of SBFs in dissolution tests allow a measure of material biopersistence or, conversely, bioaccessibility that in turn can provide a useful inference of a materials biodistribution, its acute and long-term toxicity, as well as its pathogenicity. Given the wide range of SBFs reported in the literature, a review was conducted, with a focus on fluids used to replicate environments that may be encountered upon material inhalation, including extracellular and intracellular compartments. The review aims to identify when a fluid design can replicate realistic biological conditions, demonstrate operation validation, and/or provide robustness and reproducibility. The studies examined highlight simulated lung fluids (SLFs) that have been shown to suitably replicate physiological conditions, and identify specific components that play a pivotal role in dissolution mechanisms and biological activity; including organic molecules, redox-active species and chelating agents. Material dissolution was not always driven by pH, and likewise not only driven by SLF composition; specific materials and formulations correspond to specific dissolution mechanisms. It is recommended that SLF developments focus on biological predictivity and if not practical, on better biological mimicry, as such an approach ensures results are more likely to reflect behaviour regardless of the material under investigation.
更多
查看译文
关键词
Bioaccessibility,New Approach Methodologies (NAMs),bioelution,biopersistence,inhalation,in vitro,lung fluid,predictive toxicity,simulated biological fluids
AI 理解论文
溯源树
样例
生成溯源树,研究论文发展脉络
Chat Paper
正在生成论文摘要