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Analysis of protein phosphorylation and cellular signaling events by flow cytometry: techniques and clinical applications.

机译:通过流式细胞术分析蛋白质的磷酸化和细胞信号转导事件:技术和临床应用。

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摘要

Analysis of protein phosphorylation with flow cytometric techniques has emerged as a powerful tool in the field of immunological signaling, allowing cellular subsets in complex populations to be analyzed accurately and rapidly. In this review, we examine the development of phospho-epitope, or phospho-specific, flow cytometry and the premises upon which the technique is based. Phospho-specific flow cytometry is compared to traditional biochemical methods, and its advantages, such as single cell analysis, multiparameter data acquisition, rapid protocols, and the ability to analyze rare cell subsets, are detailed. We also discuss the many technical considerations that must be addressed when developing new antibodies or analyzing new epitopes including antigen accessibility, stability of the phospho-epitope, fluorophore selection, surface phenotype integrity, and antibody suitability for staining epitopes inside fixed and permeabilized cells. The methods that have been used to date are described in light of these technical considerations. The importance of developing bioinformatic platforms in parallel with these techniques is emphasized due to the large, multiparameter datasets that are rapidly accumulated and which require more efficient data viewing and complex clustering methods than currently available for flow cytometric data. Finally, we discuss the potential clinical applications of phospho-specific flow cytometry in analyzing immune cell development and antigen-specific immune responses, as well as pharmacodynamic profiling of disease states or drug efficacy and specificity against particular signaling proteins.
机译:流式细胞仪技术对蛋白质磷酸化的分析已成为免疫信号领域的强大工具,可对复杂人群中的细胞亚群进行准确,快速的分析。在这篇综述中,我们研究了磷酸表位或磷酸特异性流式细胞仪的发展以及该技术所基于的前提。将磷酸特异性流式细胞术与传统的生化方法进行了比较,详细介绍了其优势,例如单细胞分析,多参数数据采集,快速协议以及分析稀有细胞亚群的能力。我们还讨论了开发新抗体或分析新表位时必须解决的许多技术考虑因素,包括抗原可及性,磷酸表位的稳定性,荧光团选择,表面表型完整性以及抗体对固定和透化细胞内部表位染色的适用性。鉴于这些技术考虑因素,说明了迄今为止已使用的方法。强调了与这些技术并行开发生物信息平台的重要性,这是因为大型多参数数据集迅速积累,并且需要比当前流式细胞术数据更有效的数据查看和复杂的聚类方法。最后,我们讨论了磷酸特异性流式细胞术在分析免疫细胞发育和抗原特异性免疫反应以及疾病状态或针对特定信号蛋白的药物功效和特异性的药效学分析方面的潜在临床应用。

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