Johann Donald J, Mukherjee Sumana, Prieto DaRue A, Veenstra Timothy D, Blonder Josip
Medical Oncology Branch, Center for Cancer Research, National Cancer Institute, National Institutes of Health, Bethesda, MD, USA.
Methods Mol Biol. 2011;755:95-106. doi: 10.1007/978-1-61779-163-5_8.
The heterogeneous nature of solid tumors represents a common problem in mass spectrometry (MS)-based analysis of fresh-frozen tissue specimens. Here, we describe a method that relies on synergy between laser capture microdissection (LCM) and MS for enhanced molecular profiling of solid tumors. This method involves dissection of homogeneous histologic cell types from thin fresh-frozen tissue sections via LCM, coupled with liquid chromatography (LC)-MS analysis. Such an approach enables an in-depth molecular profiling of captured cells. This is a bottom-up proteomic approach, where proteins are identified through peptide sequencing and matching against a specific proteomic database. Sample losses are minimized, since lysis, solubilization, and digestion are carried out directly on LCM caps in buffered methanol using a single tube, thus reducing sample loss between these steps. The rationale for the LCM-MS coupling is that once the optimal method parameters are established for a solid tumor of interest, homogeneous histologic tumor/tissue cells (i.e., tumor proper, stroma, etc.) can be effectively studied for potential biomarkers, drug targets, pathway analysis, as well as enhanced understanding of the pathological process under study.
实体瘤的异质性是基于质谱(MS)分析新鲜冷冻组织标本时常见的问题。在此,我们描述了一种依赖激光捕获显微切割(LCM)和MS协同作用来增强实体瘤分子谱分析的方法。该方法包括通过LCM从薄的新鲜冷冻组织切片中切割出同质的组织学细胞类型,并结合液相色谱(LC)-MS分析。这种方法能够对捕获的细胞进行深入的分子谱分析。这是一种自下而上的蛋白质组学方法,通过肽测序并与特定蛋白质组数据库进行比对来鉴定蛋白质。由于在缓冲甲醇中使用单个试管直接在LCM帽上进行裂解、溶解和消化,样品损失降至最低,从而减少了这些步骤之间的样品损失。LCM-MS联用的基本原理是,一旦为感兴趣的实体瘤确定了最佳方法参数,就可以有效地研究同质的组织学肿瘤/组织细胞(即肿瘤本身、基质等),以寻找潜在的生物标志物、药物靶点、进行通路分析,以及加深对所研究病理过程的理解。