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PIXUL-ChIP: integrated high-throughput sample preparation and analytical platform for epigenetic studies

机译:Pixul芯片:表观遗传研究的集成高通量样品制备和分析平台

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Chromatin immunoprecipitation (ChIP) is the most widely used approach for identification of genome-associated proteins and their modifications. We have previously introduced a microplate-based ChIP platform, Matrix ChIP, where the entire ChIP procedure is done on the same plate without sample transfers. Compared to conventional ChIP protocols, the Matrix ChIP assay is faster and has increased throughput. However, even with microplate ChIP assays, sample preparation and chromatin fragmentation (which is required to map genomic locations) remains a major bottleneck. We have developed a novel technology (termed PIXUL') utilizing an array of ultrasound transducers for simultaneous shearing of samples in standard 96-well microplates. We integrated PIXUL with Matrix ChIP (PIXUL-ChIP'), that allows for fast, reproducible, low-cost and high-throughput sample preparation and ChIP analysis of 96 samples (cell culture or tissues) in one day. Further, we demonstrated that chromatin prepared using PIXUL can be used in an existing ChIP-seq workflow. Thus, the high-throughput capacity of PIXUL-ChIP provides the means to carry out ChIP-qPCR or ChIP-seq experiments involving dozens of samples. Given the complexity of epigenetic processes, the use of PIXUL-ChIP will advance our understanding of these processes in health and disease, as well as facilitate screening of epigenetic drugs.
机译:染色质免疫沉淀(芯片)是最广泛使用的方法,用于鉴定基因组相关蛋白及其修饰。我们之前引入了基于酶标的芯片平台,矩阵芯片,其中整个芯片程序在同一板上完成而没有样品转移。与传统芯片协议相比,矩阵芯片测定速度更快并且具有增加的吞吐量。然而,即使具有微孔板芯片测定,样品制备和染色质片段(需要映射基因组位置)仍然是主要的瓶颈。我们开发了一种新颖的技术(称为Pixul'),利用一系列超声换能器,用于在标准的96孔微孔板中同时剪切样品。我们将具有矩阵芯片(Pixul-Chip')的Pixul集成,可在一天内快速,可再现,低成本和高通量的样品制备和芯片分析96个样品(细胞培养或组织)。此外,我们证明了使用像素制备的染色质可以用于现有的芯片SEQ工作流程。因此,Pixul芯片的高吞吐量能力提供了执行涉及数十个样品的芯片-QPCR或芯片-SEQ实验的方法。鉴于表观遗传过程的复杂性,Pixul Chip的使用将推进我们对健康和疾病中这些过程的理解,以及促进表观遗传药物的筛查。

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