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模拟口服摄入时石墨烯和氧化石墨烯的生物转化和生物相互作用。

Biotransformation and Biological Interaction of Graphene and Graphene Oxide during Simulated Oral Ingestion.

机构信息

Nanobiointeractions & Nanodiagnostics, Istituto Italiano di Tecnologia (IIT), Via Morego, 30, 16163, Genova, Italy.

Graphene Labs, Istituto Italiano di Tecnologia, Via Morego, 30, 16136, Genova, Italy.

出版信息

Small. 2018 Jun;14(24):e1800227. doi: 10.1002/smll.201800227. Epub 2018 May 14.

Abstract

The biotransformation and biological impact of few layer graphene (FLG) and graphene oxide (GO) are studied, following ingestion as exposure route. An in vitro digestion assay based on a standardized operating procedure (SOP) is exploited. The assay simulates the human ingestion of nanomaterials during their dynamic passage through the different environments of the gastrointestinal tract (salivary, gastric, intestinal). Physical-chemical changes of FLG and GO during digestion are assessed by Raman spectroscopy. Moreover, the effect of chronic exposure to digested nanomaterials on integrity and functionality of an in vitro model of intestinal barrier is also determined according to a second SOP. These results show a modulation of the aggregation state of FLG and GO nanoflakes after experiencing the complex environments of the different digestive compartments. In particular, chemical doping effects are observed due to FLG and GO interaction with digestive juice components. No structural changes/degradation of the nanomaterials are detected, suggesting that they are biopersistent when administered by oral route. Chronic exposure to digested graphene does not affect intestinal barrier integrity and is not associated with inflammation and cytotoxicity, though possible long-term adverse effects cannot be ruled out.

摘要

研究了少层石墨烯(FLG)和氧化石墨烯(GO)的生物转化和生物学影响,其暴露途径为经口摄入。利用一种基于标准化操作程序(SOP)的体外消化测定法。该测定法模拟了纳米材料在通过胃肠道不同环境(唾液、胃、肠)的动态过程中被人体摄入的情况。通过拉曼光谱评估了 FLG 和 GO 在消化过程中的物理化学变化。此外,还根据第二个 SOP 确定了慢性暴露于消化后的纳米材料对肠道屏障体外模型完整性和功能的影响。这些结果表明,FLG 和 GO 纳米薄片在经历不同消化区室的复杂环境后,其聚集状态发生了调制。特别是,由于 FLG 和 GO 与消化液成分相互作用,观察到化学掺杂效应。未检测到纳米材料的结构变化/降解,这表明它们经口服途径给药时具有生物持久性。慢性暴露于消化后的石墨烯不会影响肠道屏障的完整性,也不会引起炎症和细胞毒性,但不能排除可能存在的长期不良影响。

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