Department of Chemistry and Biochemistry, University of Maryland, College Park, Maryland 20742, United States.
J Proteome Res. 2012 Aug 3;11(8):3937-46. doi: 10.1021/pr300303t. Epub 2012 Jul 25.
Complicating proteomic analysis of whole tissues is the obvious problem of cell heterogeneity in tissues, which often results in misleading or confusing molecular findings. Thus, the coupling of tissue microdissection for tumor cell enrichment with capillary isotachophoresis-based selective analyte concentration not only serves as a synergistic strategy to characterize low abundance proteins, but it can also be employed to conduct comparative proteomic studies of human astrocytomas. A set of fresh frozen brain biopsies were selectively microdissected to provide an enriched, high quality, and reproducible sample of tumor cells. Despite sharing many common proteins, there are significant differences in the protein expression level among different grades of astrocytomas. A large number of proteins, such as plasma membrane proteins EGFR and Erbb2, are up-regulated in glioblastoma. Besides facilitating the prioritization of follow-on biomarker selection and validation, comparative proteomics involving measurements in changes of pathways are expected to reveal the molecular relationships among different pathological grades of gliomas and potential molecular mechanisms that drive gliomagenesis.
对整个组织进行蛋白质组学分析时,组织中细胞异质性的明显问题是一个常见的阻碍,这通常会导致误导或混淆的分子发现。因此,将组织微切割用于肿瘤细胞富集与基于毛细管等速电泳的选择性分析物浓缩相结合,不仅是一种用于表征低丰度蛋白质的协同策略,而且还可以用于对人脑星形细胞瘤进行比较蛋白质组学研究。一组新鲜冷冻的脑活检被选择性地微切割,以提供丰富、高质量和可重复的肿瘤细胞样本。尽管具有许多共同的蛋白质,但不同级别星形细胞瘤的蛋白质表达水平存在显著差异。大量蛋白质,如质膜蛋白 EGFR 和 Erbb2,在胶质母细胞瘤中上调。除了有助于优先选择后续生物标志物的选择和验证外,涉及通路变化测量的比较蛋白质组学有望揭示不同病理级别胶质瘤之间的分子关系和潜在的驱动胶质母细胞瘤发生的分子机制。