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固体颗粒准备好迎接蛋白质组学的黄金时代了吗?

Are Solid Particles Ready for Prime-Time Proteomics?

作者信息

Kitano Eduardo S, Demyanenko Yana, Mohammed Shabaz

机构信息

Rosalind Franklin Institute, Harwell Campus, OX11 0QX Didcot, United Kingdom.

Department of Pharmacology, University of Oxford, OX1 3QT Oxford, United Kingdom.

出版信息

Anal Chem. 2025 Sep 2;97(34):18681-18688. doi: 10.1021/acs.analchem.5c03073. Epub 2025 Aug 20.

DOI:10.1021/acs.analchem.5c03073
PMID:40833372
Abstract

We evaluate the performance of nonporous C-18 stationary phases in high-speed proteomics workflows. We employed two commercially available sub-2 μm nonporous particle (NPP) materials, ODS-IIIE (1.5 μm) and SOLAD (1.0 μm), to fabricate analytical columns using 150 μm internal diameter (i.d.) fused silica capillaries to ensure compatibility with nano-UHPLC and nano-HPLC pressure regimes. Using "long" NPP columns (15-25 cm) connected to a conventional nano-UHPLC, we found that both materials supported efficient peptide separations within the flow rate and pressure ranges typical of nano-UHPLC systems. Shorter columns, used with the 10- and 16 min Whisper Zoom 120 and Zoom 80 methods on the Evosep One HPLC, demonstrated competitive separation performance compared to columns packed with fully porous (FPP) and superficially porous particles (SPP), achieving full-width at half-maximum (FWHM) values below 2 s (Zoom 120) and 3 s (Zoom 80). DIA LC-MS/MS analysis of a human cell lysate digest demonstrated that NPP columns provided performance comparable to or slightly superior to those of FPP and SPP materials. These findings establish NPP-based columns as a viable and competitive alternative to FPP and SPP materials, particularly suited for high-throughput and high-sensitivity proteomics applications.

摘要

我们评估了无孔C-18固定相在高速蛋白质组学工作流程中的性能。我们采用了两种市售的亚2μm无孔颗粒(NPP)材料,ODS-IIIE(1.5μm)和SOLAD(1.0μm),使用内径为150μm的熔融石英毛细管制造分析柱,以确保与纳升超高效液相色谱(nano-UHPLC)和纳升高效液相色谱(nano-HPLC)的压力范围兼容。使用连接到传统纳升超高效液相色谱的“长”NPP柱(15 - 25 cm),我们发现这两种材料在纳升超高效液相色谱系统典型的流速和压力范围内都支持高效的肽分离。在Evosep One高效液相色谱仪上,将较短的柱子与10分钟和16分钟的Whisper Zoom 120和Zoom 80方法一起使用,与填充有全多孔(FPP)和表面多孔颗粒(SPP)的柱子相比,显示出具有竞争力的分离性能,半高宽(FWHM)值低于2秒(Zoom 120)和3秒(Zoom 80)。对人细胞裂解物消化物进行的数据独立采集液相色谱 - 串联质谱(DIA LC-MS/MS)分析表明,NPP柱提供的性能与FPP和SPP材料相当或略优于它们。这些发现确立了基于NPP的柱子是FPP和SPP材料可行且具有竞争力的替代品,特别适用于高通量和高灵敏度蛋白质组学应用。

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