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Generation of Ultrahigh peak capacity LC separations via elevated temperatures and high linear mobile-phase velocities

机译:通过高温和高线性流动相速度产生超高峰容量液相色谱分离

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The use of a combination of ultraperformance liquid chromatography at similar to 11 000 psi on sub 2-mu m particles combined with reversed-phase gradient chromatography at a temperature of 90 degrees C is described as applied to the analysis of endogenous and drug metabolites in human and animal urine. By using elevated temperatures, back pressures can be reduced while maintaining high flow rates and chromatographic efficiency, with peaks 1-3 s wide at the base. Application to urine samples provided a peak capacity of similar to 700 for a 10-min analysis and greater than similar to 1000 in 1 h. Despite the narrow nature of the peaks, good quality mass spectra were also obtained, allowing the identification of typical drug and endogenous metabolites. These ultra-high-resolution chromatograms should be ideal for the analysis of complex samples in, for example, metabolite identification, impurity identification, and metabonomic/metabolomic studies. Applications in natural product analysis and proteomics can also be envisaged.
机译:描述了在2微米以下的亚微米颗粒上类似于11000 psi的超高效液相色谱与90摄氏度下的反相梯度色谱相结合的方法,用于分析人体内的内源性和药物代谢物和动物尿液。通过使用高温,可以降低背压,同时保持高流速和色谱效率,峰宽为1-3 s。尿液样品的峰容量在10分钟分析中约为700,在1小时内大于1000。尽管峰的性质狭窄,但仍获得了高质量的质谱图,从而可以鉴定典型的药物和内源性代谢物。这些超高分辨率的色谱图非常适合分析复杂的样品,例如,代谢物鉴定,杂质鉴定和代谢组学/代谢组学研究。也可以设想在天然产物分析和蛋白质组学中的应用。

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