Yuan Yulin, Lin Zuan-Tao, Wang Hongting, Hong Xia, Heon Mikala, Wu Tianfu
Department of Biomedical Engineering, University of Houston, 3605 Cullen Blvd, Houston, TX, 77204-5060, USA.
Department of Clinical Laboratory, The People's Hospital of Guangxi Zhuang Autonomous Region, Nanning, Guangxi, China.
Methods Mol Biol. 2017;1654:261-269. doi: 10.1007/978-1-4939-7231-9_19.
Antibody arrays represent one of the very early protein array systems where antibodies are used to capture and detect target proteins in a high-throughput platform. The development of high-quality antibodies, nanomaterial-based novel detection probes, as well as innovative imaging technologies and computational tools has tremendously improved the sensitivity, specificity, and robustness of antibody arrays during the past decade. In this protocol we will incorporate the most updated innovations and developments of antibody arrays into the step-by-step experimental procedures. This includes antibody printing, sample preparation, array detection, as well as imaging and data analysis. Antibody array could be used for cytokine profiling or mapping of phosphorylation, glycosylation, or other post-translational modifications of target proteins.
抗体阵列是最早的蛋白质阵列系统之一,在高通量平台中使用抗体捕获和检测目标蛋白质。在过去十年中,高质量抗体、基于纳米材料的新型检测探针以及创新的成像技术和计算工具的发展极大地提高了抗体阵列的灵敏度、特异性和稳健性。在本方案中,我们将把抗体阵列的最新创新和发展纳入逐步的实验步骤中。这包括抗体打印、样品制备、阵列检测以及成像和数据分析。抗体阵列可用于细胞因子分析或目标蛋白磷酸化、糖基化或其他翻译后修饰的图谱绘制。