首页> 外文期刊>Analytical Chemistry >HEAD-COLUMN FIELD-AMPLIFIED SAMPLE STACKING IN BINARY SYSTEM CAPILLARY ELECTROPHORESIS - A ROBUST APPROACH PROVIDING OVER 1000-FOLD SENSITIVITY ENHANCEMENT
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HEAD-COLUMN FIELD-AMPLIFIED SAMPLE STACKING IN BINARY SYSTEM CAPILLARY ELECTROPHORESIS - A ROBUST APPROACH PROVIDING OVER 1000-FOLD SENSITIVITY ENHANCEMENT

机译:二元系统毛细管电泳中的头列场增强样本堆积-一种提供1000倍以上灵敏度增强的鲁棒方法

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Effective electrokinetic field-amplified sample injection occurring at the capillary inlet from a sample volume equivalent exceeding that of the capillary up to 10-fold is described and demonstrated to provide over 1000-fold sensitivity enhancement. Successful application of this head-column field-amplified sample stacking approach to the analysis of positively chargeable, hydrophobic compounds in binary system capillary electrophoresis is shown to require an initially introduced low-conductivity zone (water plug) of > 1 mm length, a sample injection voltage < 20 kV, and an injection time interval < 60 s, Following these conditions for more than 1500 runs with capillaries of 50 mu m i.d. and about 20 cm effective length, damaging heat production during electroinjection within the low-conductivity zone at the column inlet (boiling of solvent and possible deposition of solutes or fusing of capillary walls) could be prevented, The solute amount injected by head-column field-amplified sample stacking is further shown to be dependent on the organic fraction and the buffer in the sample solution, High content of organic solvent, low conductivity, and the presence of a small amount of H+ (50-100 mu M) provides the highest sensitivity for analysis of positively chargeable model substances, including amiodarone and desethylamiodarone, Solutes present at the nanomolar level can thereby be accumulated from a sample volume equivalent of about 4 mu L (with injection of about 20 nL of sample solvent into the capillary) and measured by UV absorption detection, To prevent disturbances caused by electrolysis, sample vials should be employed only once, The data obtained further show that quantitation can be reliably performed using internal calibration based on peak height (RSDs for inter- and intraday determinations are on the 2% level), However, due to variation of the roughness of the capillary walls and cuts, the time interval between operational steps, and trace adsorption onto the capillary walls, the length of the water zone drawn by capillary action on the inlet side is not constant, and external calibration therefore cannot be employed for quantitation.
机译:描述了在毛细管入口处发生的有效电动场放大的样品注射,该样品注射的等效体积超过了毛细管的体积,达到了10倍,并证明可提供1000倍以上的灵敏度增强。成功地将这种头柱场放大的样品堆叠方法应用于二元系统毛细管电泳中可带正电荷的疏水性化合物的分析,结果要求首先引入长度小于1 mm的低电导率区域(水塞),即一个样品注入电压<20 kV,注入时间间隔<60 s,遵循这些条件进行1500多次,毛细管为50微米有效长度约20 cm,可以防止在柱入口处低电导率区域内电注入过程中产生有害的热量(溶剂沸腾和可能的溶质沉积或毛细管壁融合),通过头柱电场注入的溶质量-进一步显示样品的堆积取决于样品溶液中的有机组分和缓冲液,有机溶剂含量高,电导率低以及少量H +(50-100μM)的存在提供了最高的具有正电荷的模型物质(包括胺碘酮和去乙基胺碘酮)的分析灵敏度,因此可以从相当于约4μL的样品体积中累积纳摩尔浓度的溶质(向毛细管中注入约20 nL样品溶剂)并进行测量通过紫外吸收检测,为防止电解引起的干扰,样品瓶应仅使用一次,所得数据进一步表明可以使用基于峰高的内部校准可靠地进行定量(日间和日内测定的RSD在2%的水平)。但是,由于毛细管壁和切口的粗糙度变化,操作步骤之间的时间间隔并且,由于微量吸附到毛细管壁上,在入口侧由毛细管作用吸取的水区域的长度不是恒定的,因此无法使用外部校准进行定量。

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