首页> 美国卫生研究院文献>International Journal of Environmental Research and Public Health >Determination of Histamine in Silages Using Nanomaghemite Core (γ-Fe2O3)-Titanium Dioxide Shell Nanoparticles Off-Line Coupled with Ion Exchange Chromatography
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Determination of Histamine in Silages Using Nanomaghemite Core (γ-Fe2O3)-Titanium Dioxide Shell Nanoparticles Off-Line Coupled with Ion Exchange Chromatography

机译:纳米磁赤铁矿(γ-Fe2O3)-二氧化钛壳纳米粒子离线结合离子交换色谱法测定青贮饲料中的组胺

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摘要

The presence of biogenic amines is a hallmark of degraded food and its products. Herein, we focused on the utilization of magnetic nanoparticles off-line coupled with ion exchange chromatography with post-column ninhydrin derivatization and Vis detection for histamine (Him) separation and detection. Primarily, we described the synthesis of magnetic nanoparticles with nanomaghemite core (γ-Fe2O3) functionalized with titanium dioxide and, then, applied these particles to specific isolation of Him. To obtain further insight into interactions between paramagnetic particles’ (PMP) surface and Him, a scanning electron microscope was employed. It was shown that binding of histamine causes an increase of relative current response of deprotonated PMPs, which confirmed formation of Him-PMPs clusters. The recovery of the isolation showed that titanium dioxide-based particles were able to bind and preconcentrate Him with recovery exceeding 90%. Finally, we successfully carried out the analyses of real samples obtained from silage. We can conclude that our modified particles are suitable for Him isolation, and thus may serve as the first isolation step of Him from biological samples, as it is demonstrated on alfalfa seed variety Tereza silage.
机译:生物胺的存在是降解食品及其产品的标志。在本文中,我们集中于离线使用磁性纳米粒子,结合离子交换色谱和柱后茚三酮衍生化以及Vis检测进行组胺(Him)分离和检测。首先,我们描述了具有被二氧化钛官能化的纳米磁赤铁矿芯(γ-Fe2O3)的磁性纳米粒子的合成,然后将这些粒子应用于祂的特定分离。为了进一步了解顺磁性粒子(PMP)表面与Him之间的相互作用,我们使用了扫描电子显微镜。结果表明,组胺的结合导致去质子化的PMP的相对电流响应增加,这证实了Him-PMPs簇的形成。分离物的回收表明,基于二氧化钛的颗粒能够结合并预浓缩他,回收率超过90%。最后,我们成功地进行了从青贮饲料中获得的真实样品的分析。我们可以得出结论,我们的改性颗粒适合于Him的分离,因此可以作为从生物样品中分离Him的第一步,正如在苜蓿种子品种Tereza青贮饲料上所证明的那样。

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