[Absorption mechanism of iron oxide nanoparticles in Caco-2 cell model].

Xinyi Su, Jing Zhao, Yang Liu, Jiangchun Shi, Yumeng Xie, Yating Luo, Yun Li
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Abstract

Objective: To explore the possible mechanism of absorption of iron oxide nanoparticles into the human body through the gastrointestinal tract.

Methods: This article used Caco-2 monolayer cells as a cell model, prepared characterized iron oxide nanoparticles(Fe_2O_3 NPs) as suspensions, and intervened in Caco-2 cells. CCK-8 method, transwell method, and atomic spectrophotometer method were used to explore the effect of Fe_2O_3 NPs on the activity of Caco-2 cells and the absorption and transport of them through the Caco-2 monolayer cell model. After treating Caco-2 cells with different doses of iron oxide nanoparticles suspension, electron microscopy observation and endocytosis inhibitors(chlorpromazine, methyl-β-cyclodextrin, amiloride) and western blot were performed exploring the absorption mechanism of iron oxide nanoparticles on Caco-2 cells.

Results: 1.5, 1.0 and 0.5 mg/mL were selected as absorption mechanism studies and exposure doses based on cell activity and absorption transport test result. Under electron microscopy, Fe_2O_3 NPs were distributed both inside and outside the cell. Fe_2O_3 NPs presented in the cytoplasm and vesicular like structures within cells. Endocytosis inhibitors chlorpromazine and methyl-β-cyclodextrin treatment for 24 hours showed inhibitory effects on the absorption of Fe_2O_3 NPs in the Caco-2 cell model. Treatment of Caco-2 cells with Fe_2O_3 NPs could increase the expression of divalent metal transporter(DMT1) and ferroportin 1(FPN1)(P<0.01), while decreasing expression of occludin(P<0.05).

Conclusion: There are three absorption mechanisms of iron oxide nanoparticles on Caco-2 cells: endocytosis pathways mediated by reticulin and caveolin/lipid raft proteins, absorption and transport involving iron transport related proteins, and paracellular pathways accompanied by the disruption of tight junction proteins.

[氧化铁纳米颗粒在Caco-2细胞模型中的吸附机理]。
目的:探讨氧化铁纳米颗粒经胃肠道进入人体吸收的可能机制。方法:以Caco-2单层细胞为细胞模型,制备表征氧化铁纳米颗粒(Fe_2O_3 NPs)作为悬浮液,对Caco-2细胞进行干预。采用CCK-8法、transwell法和原子分光光度计法,通过Caco-2单层细胞模型,探讨Fe_2O_3 NPs对Caco-2细胞活性和吸收转运的影响。用不同剂量的氧化铁纳米颗粒悬浮液处理Caco-2细胞后,通过电镜观察、内吞抑制剂(氯丙嗪、甲基β-环糊精、阿米洛利)和western blot方法探讨氧化铁纳米颗粒在Caco-2细胞上的吸收机制。结果:根据细胞活性和吸收转运试验结果,选择1.5、1.0和0.5 mg/mL作为吸收机制研究和暴露剂量。电镜下,Fe_2O_3 NPs分布在细胞内外。Fe_2O_3 NPs存在于细胞质和细胞内的泡状结构中。内吞抑制剂氯丙嗪和甲基β-环糊精处理24h对Caco-2细胞模型Fe_2O_3 NPs的吸收有抑制作用。Fe_2O_3 NPs处理Caco-2细胞可增加二价金属转运蛋白(DMT1)和铁转运蛋白1(FPN1)的表达(P<0.01),降低occludin的表达(P<0.05)。结论:氧化铁纳米颗粒在Caco-2细胞上的吸收机制有三种:网状蛋白和小洞蛋白/脂筏蛋白介导的内吞途径,铁转运相关蛋白介导的吸收和转运途径,以及伴随紧密连接蛋白破坏的细胞旁途径。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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