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首页> 外文期刊>Journal of Analytical Atomic Spectrometry >Determination of phosphorus in phosphorylated deoxyribonucleotides using capillary electrophoresis and high performance liquid chromatography hyphenated to inductively coupled plasma mass spectrometry with an octopole reaction cell
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Determination of phosphorus in phosphorylated deoxyribonucleotides using capillary electrophoresis and high performance liquid chromatography hyphenated to inductively coupled plasma mass spectrometry with an octopole reaction cell

机译:毛细管电泳和高效液相色谱-八极杆反应池电感耦合等离子体质谱联用法测定磷酸化脱氧核糖核苷酸中的磷

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The determination of phosphorus in a biologically relevant sample matrix such as DNA is described. The analytical methodology used is based on a robust on-line coupling of capillary electrophoresis (CE) or high performance liquid chromatography (HPLC) with inductively coupled plasma mass spectrometry, equipped with an octopole reaction system (ORS-ICP-MS). Polyatomic ions formed in the plasma and the interface region of the ICP-MS that interfere with the determination of P at mass 31 were minimised by the addition of helium to the collision cell. Instrumental detection limits of 125 ng L~(-1) for ~(31)P, and in the range of 18 to 49 ng L~(-1) for the other trace elements, were achieved under the conditions described. In order to demonstrate the high separation and detection efficiency of the system, the method developed has been applied to the clement specific detection of phosphorus in monophosphorylated deoxynucleotides and to enzymatically digested calf thymus DNA after CE and HPLC separation, respectively. Both hyphenated techniques provide baseline separation of the four deoxynucleotide monophosphates (dNMP), which are present in the DNA chain. With CE-ICP-MS, detection limits for phosphorus down to 53 ug L~(-1) (2'-deoxyguanosin-5'-monophosphate, dAMP) (corresponding to 0.6 pg P absolute) have been achieved. RSDs of the migration times were about 5%. Using HPLC-ICP-MS, detection limits down to 3μL~(-1) (2'-deoxythymidine-5'-monophosphate, dTMP) (corresponding to 0.03 ng P absolute) were obtained. The migration/elution order of the deoxynucleotides investigated was obtained by comparison with the migration/retention times of commercially available dNMP's. Furthermore it was checked if HPLC-ESI-MS can be operated under the same chromatographic conditions for the confirmation of the elution order and for the characterisation of unknown peaks. Finally, flow injection analysis (FIA) was used for the quantification of the phosphorus content in the dNMP samples. Using FIA, detection limits for phosphorus of 2.5 ug L~(-1) corresponding to 25 pg phosphorus absolute were achieved.
机译:描述了生物相关样品基质(如DNA)中磷的测定。所使用的分析方法基于毛细管电泳(CE)或高效液相色谱(HPLC)与电感耦合等离子体质谱的稳健在线耦合,并配有八极杆反应系统(ORS-ICP-MS)。通过在碰撞池中添加氦气,可以最小化在等离子体和ICP-MS界面区域中形成的多原子离子,这些离子会干扰质量31下的P的测定。在上述条件下,仪器对〜(31)P的检测限为125 ng L〜(-1),其他微量元素的检测限为18 ng L〜(-1)。为了证明该系统的高分离和检测效率,已开发的方法已分别应用于CE和HPLC分离后,对单磷酸化的脱氧核苷酸中的磷进行元素特异性检测以及酶消化的小牛胸腺DNA。两种连接技术都提供了DNA链中存在的四种脱氧核苷酸单磷酸(dNMP)的基线分离。使用CE-ICP-MS,磷的检出限已降至53 ug L〜(-1)(2'-脱氧鸟苷-5'-单磷酸盐,dAMP)(对应于0.6 pg P的绝对值)。迁移时间的RSD约为5%。使用HPLC-ICP-MS可获得低至3μL〜(-1)的检测限(2'-脱氧胸苷-5'-单磷酸酯,dTMP)(对应于0.03 ng P绝对值)。通过与市售dNMP的迁移/保留时间进行比较,获得了所研究的脱氧核苷酸的迁移/洗脱顺序。此外,检查了HPLC-ESI-MS是否可以在相同的色谱条件下操作,以确认洗脱顺序和未知峰的特征。最后,流动注射分析(FIA)用于定量dNMP样品中的磷含量。使用FIA可以达到2.5 ug L〜(-1)的磷检出限,相当于25 pg的绝对磷。

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