Division of Clinical Protein Science & Imaging, Department of Clinical Sciences (Lund) and Department of Biomedical Engineering , Lund University , 221 00 Lund , Sweden.
Department of Pathology , Semmelweis University , Budapest 1085 , Hungary.
J Proteome Res. 2019 Jan 4;18(1):548-556. doi: 10.1021/acs.jproteome.8b00792. Epub 2018 Dec 10.
Large cohorts of carefully collected clinical tissue materials play a central role in acquiring sufficient depth and statistical power to discover disease-related mechanisms and biomarkers of clinical significance. Manual preparation of such large sample cohorts requires experienced laboratory personnel. This carries other possible downsides such as low throughput, high risk of errors, and low reproducibility. In this work, three automated technologies for high-throughput proteomics of frozen sectioned tissues were compared. The instruments evaluated included the Bioruptor for tissue disruption and protein extraction; the Barocycler, which is able to disrupt tissues and digest the proteins; and the AssayMAP Bravo, a microchromatography platform for protein digestion, peptide desalting, and fractionation. Wide varieties of tissue samples from rat spleen, malignant melanoma, and pancreatic tumors were used for the assessment. The three instruments displayed reproducible and consistent results, as was proven by high correlations and low coefficients of variation between technical replicates and even more importantly, between replicates that were processed in different batches or at different time points. The results from this study allowed us to integrate these technologies into an automated sample preparation workflow for large-scale proteomic studies that are currently ongoing. Data are available via ProteomeXchange with identifiers PXD010296 and PXD011295.
大量精心收集的临床组织材料在获得足够的深度和统计能力以发现与疾病相关的机制和具有临床意义的生物标志物方面发挥着核心作用。如此大量样本队列的手动制备需要有经验的实验室人员。这带来了其他一些可能的缺点,例如低通量、高错误风险和低重现性。在这项工作中,比较了三种用于冷冻切片组织高通量蛋白质组学的自动化技术。评估的仪器包括用于组织破坏和蛋白质提取的 Bioruptor;能够破坏组织并消化蛋白质的 Barocycler;以及 AssayMAP Bravo,一种用于蛋白质消化、肽脱盐和分级的微色谱平台。来自大鼠脾脏、恶性黑色素瘤和胰腺肿瘤的各种组织样本用于评估。这三种仪器显示出可重复和一致的结果,这一点通过技术重复之间以及更重要的是在不同批次或不同时间点处理的重复之间的高相关性和低变异系数得到证明。这项研究的结果使我们能够将这些技术集成到正在进行的大规模蛋白质组学研究的自动化样本制备工作流程中。数据可通过 ProteomeXchange 获得,标识符为 PXD010296 和 PXD011295。