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纳米材料安全性评估中体外消化应用面临的挑战

Challenges of the Application of In Vitro Digestion for Nanomaterials Safety Assessment.

作者信息

Vital Nádia, Gramacho Ana Catarina, Silva Mafalda, Cardoso Maria, Alvito Paula, Kranendonk Michel, Silva Maria João, Louro Henriqueta

机构信息

National Institute of Health Dr. Ricardo Jorge (INSA), Department of Human Genetics, 1649-016 Lisbon, Portugal.

NOVA Medical School, Universidade NOVA de Lisboa, 1169-056 Lisbon, Portugal.

出版信息

Foods. 2024 May 28;13(11):1690. doi: 10.3390/foods13111690.

Abstract

Considering the increase in the production and use of nanomaterials (NM) in food/feed and food contact materials, novel strategies for efficient and sustainable hazard characterization, especially in the early stages of NM development, have been proposed. Some of these strategies encompass the utilization of in vitro simulated digestion prior to cytotoxic and genotoxic assessment. This entails exposing NM to fluids that replicate the three successive phases of digestion: oral, gastric, and intestinal. Subsequently, the resulting digestion products are added to models of intestinal cells to conduct toxicological assays, analyzing multiple endpoints. Nonetheless, exposure of intestinal cells to the digested products may induce cytotoxicity effects, thereby posing a challenge to this strategy. The aim of this work was to describe the challenges encountered with the in vitro digestion INFOGEST 2.0 protocol when using the digestion product in toxicological studies of NM, and the adjustments implemented to enable its use in subsequent in vitro biological assays with intestinal cell models. The adaptation of the digestion fluids, in particular the reduction of the final bile concentration, resulted in a reduced toxic impact of digestion products.

摘要

考虑到食品/饲料和食品接触材料中纳米材料(NM)的生产和使用不断增加,人们提出了高效且可持续的危害表征新策略,尤其是在纳米材料开发的早期阶段。其中一些策略包括在细胞毒性和遗传毒性评估之前利用体外模拟消化。这需要将纳米材料暴露于模拟消化三个连续阶段的液体中:口腔、胃和肠道。随后,将所得消化产物添加到肠道细胞模型中进行毒理学测定,分析多个终点。然而,将肠道细胞暴露于消化产物可能会诱导细胞毒性作用,从而给该策略带来挑战。这项工作的目的是描述在纳米材料毒理学研究中使用消化产物时,体外消化INFOGEST 2.0方案所遇到的挑战,以及为使其能够用于后续肠道细胞模型的体外生物学测定而进行的调整。消化液的调整,特别是最终胆汁浓度的降低,降低了消化产物的毒性影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5f1b/11171843/b97fa7f09304/foods-13-01690-g001.jpg

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