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用于监测生物反应的反相蛋白质微阵列。

Reverse phase protein microarrays for monitoring biological responses.

作者信息

Espina Virginia, Wulfkuhle Julia D, Calvert Valerie S, Petricoin Emanuel F, Liotta Lance A

机构信息

Center for Applied Proteomics and Molecular Medicine, George Mason University, Manassas, VA, USA.

出版信息

Methods Mol Biol. 2007;383:321-36. doi: 10.1007/978-1-59745-335-6_21.

Abstract

Cancer has a genomic and proteomic basis. Genomic information provides information about the somatic genetic changes existing in the tumor that provides a survival advantage driving neoplastic progression. On the other hand, proteomics aids in the identification of dysregulated cellular proteins, including known or novel drug targets, governing cellular survival, proliferation, invasion, and cell death. The clinical utility of reverse phase protein microarrays lies in their ability to generate a map of known cell signaling networks or pathways for an individual patient. This protein network map aids in identifying critical nodes or pathways that may serve as drug targets for individualized or combinatorial therapy. Reverse phase protein microarrays are one of the tools available for profiling the protein molecular pathways in a given cellular sample. This type of microarray can uniquely quantify phosphorylation states of proteins. An entire cellular proteome is immobilized on a substratum with subsequent immunodetection of total and activated forms of cell signaling proteins. The pattern of signal intensity generated by the protein spots can be correlated with biological and clinical information as diagnostic and prognostic indicators.

摘要

癌症具有基因组和蛋白质组学基础。基因组信息提供了肿瘤中存在的体细胞遗传变化的信息,这些变化提供了驱动肿瘤进展的生存优势。另一方面,蛋白质组学有助于识别失调的细胞蛋白质,包括已知或新型药物靶点,这些靶点控制着细胞的存活、增殖、侵袭和细胞死亡。反相蛋白质微阵列的临床效用在于它们能够为个体患者生成已知细胞信号网络或通路的图谱。这种蛋白质网络图有助于识别可能作为个体化或联合治疗药物靶点的关键节点或通路。反相蛋白质微阵列是用于分析给定细胞样品中蛋白质分子通路的工具之一。这种类型的微阵列能够独特地定量蛋白质的磷酸化状态。整个细胞蛋白质组固定在基质上,随后对细胞信号蛋白的总形式和活化形式进行免疫检测。蛋白质斑点产生的信号强度模式可以与作为诊断和预后指标的生物学和临床信息相关联。

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