首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >Microwave-assisted high-throughput acid hydrolysis in silicon carbide microtiter platforms-A rapid and low volume sample preparation technique for total amino acid analysis in proteins and peptides
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Microwave-assisted high-throughput acid hydrolysis in silicon carbide microtiter platforms-A rapid and low volume sample preparation technique for total amino acid analysis in proteins and peptides

机译:碳化硅微量滴定平台中的微波辅助高通量酸水解-蛋白质和多肽中总氨基酸分析的快速,小体积样品制备技术

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摘要

An efficient microwave-assisted high-throughput protein hydrolysis protocol was developed utilizing strongly microwave absorbing silicon carbide-based microtiter platforms. The plates are equipped with 20 bore holes having the proper dimensions for holding standard screw-capped HPLC/GC vials. Due to the possibility of heating up to four heating platforms simultaneously (80 vials), parallel microwave-assisted acid hydrolyses can be performed under carefully controlled conditions significantly reducing the overall time required for protein hydrolysis and the subsequent evaporation step required for larger volumes of acid. An extensive optimization of the hydrolysis conditions has demonstrated that 5. min irradiation at 160 °C with 6. N HCl leads to comparable results in terms of total and individual amino acid recovery as the traditional method requiring 24. h heating at 110 °C. Complete hydrolysis of several proteins and synthetic peptides was performed using 25 μg of sample material and 100 μL of 6. N HCl in a dedicated low-volume HPLC/GC vial. Since the hydrolysis and subsequent analysis can be performed from the same vial, errors caused by sample transfer can be minimized. Control experiments have demonstrated that the observed rate enhancements are the result of a purely thermal/kinetic effect as a consequence of the considerable higher reaction temperatures.
机译:利用强吸收微波的碳化硅基微量滴定平台,开发了一种高效的微波辅助高通量蛋白质水解方案。平板上装有20个孔,这些孔的尺寸合适,可容纳标准的带螺帽的HPLC / GC小瓶。由于可以同时加热多达四个加热平台(80个样品瓶),因此可以在精心控制的条件下进行平行微波辅助酸水解,从而大大减少了蛋白质水解所需的总时间以及大量酸所需的后续蒸发步骤。水解条件的广泛优化表明,在160°C下用6. N HCl照射5分钟可以得到与总氨基酸和单个氨基酸回收率相当的结果,而传统方法需要在110°C下加热24 h。在专用的小体积HPLC / GC小瓶中,使用25μg样品材料和100μL6. N HCl对几种蛋白质和合成肽进行完全水解。由于可以从同一个样品瓶中进行水解和后续分析,因此可以将样品转移引起的误差降到最低。对照实验表明,观察到的速率提高是由于相当高的反应温度导致的纯热/动力学效应的结果。

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