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High throughput automated chromatin immunoprecipitation as a platform for drug screening and antibody validation

机译:高通量自动化的染色质免疫沉淀为药物筛选和抗体的验证平台

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摘要

Chromatin immunoprecipitation (ChIP) is an assay for interrogating protein–DNA interactions that is increasingly being used for drug target discovery and screening applications. Currently the complexity of the protocol and the amount of hands-on time required for this assay limits its use to low throughput applications; furthermore, variability in antibody quality poses an additional obstacle in scaling up ChIP for large scale screening purposes. To address these challenges, we report HTChIP, an automated microfluidic-based platform for performing high-throughput ChIP screening measurements of 16 different targets simultaneously, with potential for further scale-up. From chromatin to analyzable PCR results only takes one day using HTChIP, as compared to several days up to one week for conventional protocols. HTChIP can also be used to test multiple antibodies and select the best performer for downstream ChIP applications, saving time and reagent costs of unsuccessful ChIP assays as a result of poor antibody quality. We performed a series of characterization assays to demonstrate that HTChIP can rapidly and accurately evaluate the epigenetic states of a cell, and that it is sensitive enough to detect the changes in the epigenetic state induced by a cytokine stimulant over a fine temporal resolution. With these results, we believe that HTChIP can introduce large improvements in routine ChIP, antibody screening, and drug screening efficiency, and further facilitate the use of ChIP as a valuable tool for research and discovery.
机译:染色质免疫沉淀(CHIP)是用于询问蛋白质-DNA相互作用的测定,所述蛋白质-DNA相互作用越来越多地用于药物靶标发现和筛选应用。目前,协议的复杂性和该测定所需的动手时间限制了其对低吞吐量应用的用途;此外,抗体质量的可变性在缩放芯片中造成额外的障碍以进行大规模筛选目的。为了解决这些挑战,我们报告了HTChip,是一种自动化的基于微流体的平台,用于同时执行16种不同目标的高通量芯片筛选测量,具有进一步扩大的潜力。从染色质来分析PCR,结果只需要一天使用HTChip,而常规方案的几天高达一周。 HTChip还可用于测试多种抗体,并为下游芯片应用选择最佳表演者,由于抗体质量差,节省了不成功的芯片测定的时间和试剂成本。我们进行了一系列表征测定以证明HTChip可以迅速和准确地评估细胞的表观遗传状态,并且它足以检测细胞因子兴奋剂在细时分辨率上诱导的表观遗传状态的变化。通过这些结果,我们认为HTChip可以引入常规芯片,抗体筛选和药物筛选效率的大量改进,并进一步促进芯片作为研究和发现的有价值工具。

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