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首页> 外文期刊>Toxicology Research >Corona protein composition and cytotoxicity evaluation of ultra-small zeolites synthesized from template free precursor suspensionst
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Corona protein composition and cytotoxicity evaluation of ultra-small zeolites synthesized from template free precursor suspensionst

机译:无模板前体悬浮液合成的超小沸石的电晕蛋白组成和细胞毒性评价

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The toxicity of two types of ultra-small zeolites (8-18 nm) with LTL- and EMT-type structures is reported. Both the LTL- and EMT-type zeolites belong to the same group of molecular sieves; they have large pores (7.1-7.5 A) and low silica content (Si/AI = 1.2-2.3). The zeolites are prepared by an environmentally friendly synthetic approach from precursor suspensions without using any organic template. Cellular interactions with the two types of zeolite nanocrystals are evaluated by cell viability, reactive oxygen species and cell life cycle assays. It is found that various concentrations of zeolites have negligible effects on the cell life cycle. Moreover, the LTL- and EMT-types zeolites did not cause extensive oxidative stress on the cells. Althoughit is seen that the zeolites extensively entered in the cells, there is no sign of toxicity for all employed concentrations of ultra-small EMTand LTL zeolites. Additionally, no abnormality in DNA replication while exposed to the zeolites is observed. Very importantly, the zeolite corona shows a high affinity for fibrinogen, moderate affinity for apoA-ll and complement factor 3, and trace affinity for albumin, which is the most abundant protein of human plasma. Thus the zeolite nanoparticles can be considered as very promising material for purification of fibrinogen and lipoproteins. Since fibrinogen is considered as acute phase protein and found to be the most associated biomolecule in the composition of corona at the surface of zeolites, we propose that these nanoparticles can be potentially pro-inflammatory for in vivo applications.
机译:报道了两种具有LTL和EMT型结构的超小型沸石(8-18 nm)的毒性。 LTL型和EMT型沸石都属于同一类分子筛;它们具有大孔(7.1-7.5 A)和低二氧化硅含量(Si / Al = 1.2-2.3)。所述沸石通过环境友好的合成方法由前体悬浮液制备,无需使用任何有机模板。通过细胞活力,活性氧和细胞生命周期分析评估了与两种沸石纳米晶体的细胞相互作用。发现各种浓度的沸石对细胞生命周期的影响可忽略不计。此外,LTL型和EMT型沸石不会在细胞上引起广泛的氧化应激。尽管已经看到沸石广泛进入细胞中,但是对于所有使用浓度的超小EMT和LTL沸石都没有毒性的迹象。另外,未观察到暴露于沸石时DNA复制的异常。非常重要的是,沸石电晕对纤维蛋白原具有很高的亲和力,对apoA-11和补体因子3的亲和力很高,对白蛋白的痕量亲和力也很高,白蛋白是人血浆中最丰富的蛋白质。因此,沸石纳米颗粒可以被认为是用于纯化纤维蛋白原和脂蛋白的非常有前途的材料。由于纤维蛋白原被认为是急性期蛋白,并且被发现是沸石表面电晕组成中最相关的生物分子,因此我们建议这些纳米颗粒在体内应用中可能具有促炎作用。

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