Agglomeration Behavior and Fate of Food-Grade Titanium Dioxide in Human Gastrointestinal Digestion and in the Lysosomal Environment

被引:8
|
作者
Ferraris, Francesca [1 ]
Raggi, Andrea [1 ]
Ponti, Jessica [2 ]
Mehn, Dora [2 ]
Gilliland, Douglas [2 ]
Savini, Sara [1 ]
Iacoponi, Francesca [1 ]
Aureli, Federica [1 ]
Calzolai, Luigi [2 ]
Cubadda, Francesco [1 ]
机构
[1] Ist Super Sanita, Natl Inst Hlth, I-00161 Rome, Italy
[2] European Commiss, Joint Res Ctr JRC, I-21027 Ispra, Italy
关键词
titanium dioxide; E; 171; fate; human gastrointestinal digestion; lysosomes; particle agglomeration; physicochemical characterization; single-particle ICP-MS; transmission electron microscopy; risk assessment; PLASMA-MASS SPECTROMETRY; IN-VITRO DIGESTION; SILVER NANOPARTICLES; IMPACT; PROTEIN; POWDERS;
D O I
10.3390/nano13131908
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
In the present study, we addressed the knowledge gaps regarding the agglomeration behavior and fate of food-grade titanium dioxide (E 171) in human gastrointestinal digestion (GID). After thorough multi-technique physicochemical characterization including TEM, single-particle ICP-MS (spICP-MS), CLS, VSSA determination and ELS, the GI fate of E 171 was studied by applying the in vitro GID approach established for the regulatory risk assessment of nanomaterials in Europe, using a standardized international protocol. GI fate was investigated in fasted conditions, relevant to E 171 use in food supplements and medicines, and in fed conditions, with both a model food and E 171-containing food samples. TiO2 constituent particles were resistant to GI dissolution, and thus, their stability in lysosomal fluid was investigated. The biopersistence of the material in lysosomal fluid highlighted its potential for bioaccumulation. For characterizing the agglomeration degree in the small intestinal phase, spICP-MS represented an ideal analytical tool to overcome the limitations of earlier studies. We demonstrated that, after simulated GID, in the small intestine, E 171 (at concentrations reflecting human exposure) is present with a dispersion degree similar to that obtained when dispersing the material in water by means of high-energy sonication (i.e., & GE;70% of particles <250 nm).
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页数:18
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