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首页> 外文期刊>Chromatographia >Comments on the Implementation of a Simple Peak Capacity Optimization Procedure and Comparison of Poly(styrene– divinylbenzene) and RP-18 Silica Monolithic Capillary Columns of 5-cm for the Analysis of Protein Digests
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Comments on the Implementation of a Simple Peak Capacity Optimization Procedure and Comparison of Poly(styrene– divinylbenzene) and RP-18 Silica Monolithic Capillary Columns of 5-cm for the Analysis of Protein Digests

机译:关于实施简单峰容量优化程序的评论,以及用于分析蛋白质消化的5厘米厚的聚苯乙烯-二乙烯基苯和RP-18硅胶整体毛细管柱的比较

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摘要

For the analysis of protein digests, the peak capacity in reversed-phase liquid chromatography is of paramount importance. A univariate method to maximize the peak capacity as developed by Wang et al. (Anal Chem 78:3406–3416, 20) has been applied and tested for a monolithic RP-18 silica capillary column. In their method, using model peptides representing a bovine serum albumin digest, the gradient time and temperature are kept constant while the flow rate and eluent strength are varied. Despite our criticism on the fixed starting conditions, a long gradient time leading to an unnecessary long analysis time and a high temperature leading to possible degradation products in the chromatogram, and the peak capacity as the only optimization parameter this fast and simple optimization strategy turns out to be applicable to capillary monolithic columns. Furthermore, the influence of the peak capacity on a second optimization parameter, the MS protein identification score, is examined. The procedure is also used to enhance the performance of two popular types of monolithic capillary LC columns (silica-C18 and poly(styrene–divinylbenzene)) of the same length for the analysis of protein digests. Comparison of both columns show that the calculated chromatographic parameters, like productivity and peak capacity, and identification score for both columns are about the same. For a more complicated nine-protein digest the performance of the silica monolith is slightly better.
机译:对于蛋白质消化物的分析,反相液相色谱中的峰容量至关重要。 Wang等人开发的一种单变量方法,以最大化峰容量。 (Anal Chem 78:3406–3416,20)已被应用并测试了整体式RP-18硅胶毛细管柱。在他们的方法中,使用代表牛血清白蛋白消化物的模型肽,在改变流速和洗脱强度的同时,梯度时间和温度保持恒定。尽管我们对固定的起始条件提出了批评,但漫长的梯度时间会导致不必要的较长分析时间,而高温则会导致色谱图中可能的降解产物,而峰容量是该快速简便的优化策略唯一的优化参数适用于毛细管整体柱。此外,检查了峰容量对第二优化参数(MS蛋白识别评分)的影响。该方法还用于增强两种相同长度的流行类型的整体毛细管液相色谱柱(硅胶C18和聚(苯乙烯-二乙烯基苯))的性能,以分析蛋白质消化物。两种色谱柱的比较表明,计算出的色谱参数,如生产率和峰容量,以及两种色谱柱的鉴定得分大致相同。对于更复杂的九蛋白消化,二氧化硅整体柱的性能稍好一些。

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