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首页> 外文期刊>Analytical and bioanalytical chemistry >Can we trust mass spectrometry for determination of arsenic peptides in plants: comparison of LC-ICP-MS and LC-ES-MS/ICP-MS with XANES/EXAFS in analysis of Thunbergia alata
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Can we trust mass spectrometry for determination of arsenic peptides in plants: comparison of LC-ICP-MS and LC-ES-MS/ICP-MS with XANES/EXAFS in analysis of Thunbergia alata

机译:我们可以信任质谱法测定植物中的砷肽吗?LC-ICP-MS和LC-ES-MS / ICP-MS与XANES / EXAFS的比较在分析黄柏中

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The weakest step in the analytical procedure for speciation analysis is extraction from a biological material into an aqueous solution which undergoes HPLC separation and then simultaneous online detection by elemental and molecular mass spectrometry ( ICP - MS/ ES- MS). This paper describes a study to determine the speciation of arsenic and, in particular, the arsenite phytochelatin complexes in the root from an ornamental garden plant Thunbergia alata exposed to 1 mg As L-1 as arsenate. The approach of formic acid extraction followed by HPLC - ES- MS/ ICP - MS identified different As-III - PC complexes in the extract of this plant and made their quantification via sulfur ( m/ z 32) and arsenic ( m/ z 75) possible. Although sulfur sensitivity could be significantly increased when xenon was used as collision gas in ICP - qMS, or when HR- ICP - MS was used in medium resolution, the As: S ratio gave misleading results in the identification of As-III - PC complexes due to the relatively low resolution of the chromatography system in relation to the variety of As - peptides in plants. Hence only the parallel use of ES- MS/ ICP - MS was able to prove the occurrence of such arsenite phytochelatin complexes. Between 55 and 64% of the arsenic was bound to the sulfur of peptides mainly as As-III(PC2)(2), As-III(PC3) and As-III(PC4). XANES ( X- ray absorption near- edge spectroscopy) measurement, using the freshly exposed plant root directly, confirmed that most of the arsenic is trivalent and binds to S of peptides ( 53% As - S) while 38% occurred as arsenite and only 9% unchanged as arsenate. EXAFS data confirmed that As - S and As - O bonds occur in the plants. This study confirms, for the first time, that As - peptides can be extracted by formic acid and chromatographically separated on a reversed- phase column without significant decomposition or de- novo synthesis during the extraction step.
机译:形态分析方法中最薄弱的步骤是从生物材料中提取水溶液,然后进行HPLC分离,然后通过元素和分子质谱仪(ICP-MS / ES-MS)同时进行在线检测。本文介绍了一项确定砷的形态的研究,尤其是确定暴露于1 mg As L-1 As-1砷的观赏园林植物通花草(Thunbergia alata)根中砷的形态,尤其是亚砷酸盐植物螯合物的形态。甲酸提取方法,然后用HPLC-ES-MS / ICP-MS在该植物提取物中鉴定出不同的As-III-PC配合物,并通过硫(m / z 32)和砷(m / z 75 )可能。尽管当氙用作ICP-qMS的碰撞气体或HR- ICP-MS以中等分辨率使用时,硫的敏感性可以显着提高,但As:S的比值对As-III-PC配合物的鉴定产生了误导性的结果由于色谱系统相对于植物中As-肽的多样性而言分辨率较低。因此,只有同时使用ES-MS / ICP-MS才能证明这种亚砷酸盐植物螯合螯合物的存在。 55-64%的砷与肽的硫结合,主要是As-III(PC2)(2),As-III(PC3)和As-III(PC4)。 XANES(X射线吸收近边缘光谱法)直接使用新鲜暴露的植物根进行测量,证实大多数砷是三价的并与肽的S结合(53%As-S),而38%以亚砷酸盐形式存在,仅砷含量不变为9%。 EXAFS数据证实植物中存在As-S和As-O键。这项研究首次证实,可以通过甲酸提取As-肽,并在反相色谱柱上进行色谱分离,而在提取步骤中没有明显的分解或从头合成。

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