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摄入的二氧化钛纳米材料的毒性的细胞和分子机制。

Cellular and Molecular Mechanisms of Toxicity of Ingested Titanium Dioxide Nanomaterials.

机构信息

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

ToxOmics - Centre for Toxicogenomics and Human Health, NOVA Medical School, Universidade NOVA de Lisboa, Lisbon, Portugal.

出版信息

Adv Exp Med Biol. 2022;1357:225-257. doi: 10.1007/978-3-030-88071-2_10.

Abstract

An exponential increase in products containing titanium dioxide nanomaterials (TiO), in agriculture, food and feed industry, lead to increased oral exposure to these nanomaterials (NMs). Thus, the gastrointestinal tract (GIT) emerges as a possible route of exposure that may drive systemic exposure, if the intestinal barrier is surpassed. NMs have been suggested to produce adverse outcomes, such as genotoxic effects, that are associated with increased risk of cancer, leading to a concern for public health. However, to date, the differences in the physicochemical characteristics of the NMs studied and other variables in the test systems have generated contradictory results in the literature. Processes like human digestion may change the NMs characteristics, inducing unexpected toxic effects in the intestine. Using TiO as case-study, this chapter provides a review of the works addressing the interactions of NMs with biological systems in the context of intestinal tract and digestion processes, at cellular and molecular level. The knowledge gaps identified suggest that the incorporation of a simulated digestion process for in vitro studies has the potential to improve the model for elucidating key events elicited by these NMs, advancing the nanosafety studies towards the development of an adverse outcome pathway for intestinal effects.

摘要

随着含二氧化钛纳米材料(TiO)的产品在农业、食品和饲料工业中的应用呈指数级增长,人们越来越多地通过口腔接触到这些纳米材料(NMs)。因此,如果肠道屏障被突破,胃肠道(GIT)可能成为暴露的途径,从而导致全身暴露。有研究表明,纳米材料会产生遗传毒性等不良后果,这些后果与癌症风险增加有关,从而引发了对公共健康的关注。然而,迄今为止,研究中纳米材料的物理化学特性差异以及测试系统中的其他变量在文献中产生了相互矛盾的结果。人类消化等过程可能会改变纳米材料的特性,在肠道中引发意想不到的毒性作用。本章以 TiO 为例,综述了纳米材料与肠道和消化过程中生物系统相互作用的研究工作,从细胞和分子水平探讨了这一问题。确定的知识空白表明,在体外研究中纳入模拟消化过程有可能改善该模型,从而阐明这些纳米材料引发的关键事件,推进纳米安全性研究,为肠道效应的不良结局途径的发展奠定基础。

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