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使用基于交流电动动力学的平台从未处理的血浆中同时分离循环核酸和细胞外囊泡相关蛋白质生物标志物。

Simultaneous Isolation of Circulating Nucleic Acids and EV-Associated Protein Biomarkers From Unprocessed Plasma Using an AC Electrokinetics-Based Platform.

作者信息

Hinestrosa Juan Pablo, Searson David J, Lewis Jean M, Kinana Alfred, Perrera Orlando, Dobrovolskaia Irina, Tran Kevin, Turner Robert, Balcer Heath I, Clark Iryna, Bodkin David, Hoon Dave S B, Krishnan Rajaram

机构信息

Biological Dynamics, Inc., San Diego, CA, United States.

Departments of Translational Molecular Medicine and Sequence Center, John Wayne Cancer Institute, Santa Monica, CA, United States.

出版信息

Front Bioeng Biotechnol. 2020 Nov 5;8:581157. doi: 10.3389/fbioe.2020.581157. eCollection 2020.

Abstract

The power of personalized medicine is based on a deep understanding of cellular and molecular processes underlying disease pathogenesis. Accurately characterizing and analyzing connections between these processes is dependent on our ability to access multiple classes of biomarkers (DNA, RNA, and proteins)-ideally, in a minimally processed state. Here, we characterize a biomarker isolation platform that enables simultaneous isolation and on-chip detection of cell-free DNA (cfDNA), extracellular vesicle RNA (EV-RNA), and EV-associated proteins in unprocessed biological fluids using AC Electrokinetics (ACE). Human biofluid samples were flowed over the ACE microelectrode array (ACE chip) on the Verita platform while an electrical signal was applied, inducing a field that reversibly captured biomarkers onto the microelectrode array. Isolated cfDNA, EV-RNA, and EV-associated proteins were visualized directly on the chip using DNA and RNA specific dyes or antigen-specific, directly conjugated antibodies (CD63, TSG101, PD-L1, GPC-1), respectively. Isolated material was also eluted off the chip and analyzed downstream by multiple methods, including PCR, RT-PCR, next-generation sequencing (NGS), capillary electrophoresis, and nanoparticle size characterization. The detection workflow confirmed the capture of cfDNA, EV-RNA, and EV-associated proteins from human biofluids on the ACE chip. Tumor specific variants and the mRNAs of housekeeping gene were detected in cfDNA and RNA isolated directly from chips in PCR, NGS, and RT-PCR assays, demonstrating that high-quality material can be isolated from donor samples using the isolation workflow. Detection of the luminal membrane protein TSG101 with antibodies depended on membrane permeabilization, consistent with the presence of vesicles on the chip. Protein, morphological, and size characterization revealed that these vesicles had the characteristics of EVs. The results demonstrated that unprocessed cfDNA, EV-RNA, and EV-associated proteins can be isolated and simultaneously fluorescently analyzed on the ACE chip. The compatibility with established downstream technologies may also allow the use of the platform as a sample preparation method for workflows that could benefit from access to unprocessed exosomal, genomic, and proteomic biomarkers.

摘要

个性化医疗的力量基于对疾病发病机制背后细胞和分子过程的深入理解。准确表征和分析这些过程之间的联系取决于我们获取多种生物标志物(DNA、RNA和蛋白质)的能力——理想情况下,处于最少加工状态。在此,我们描述了一种生物标志物分离平台,该平台利用交流电动学(ACE)能够在未加工的生物流体中同时分离和芯片上检测游离DNA(cfDNA)、细胞外囊泡RNA(EV-RNA)以及与细胞外囊泡相关的蛋白质。将人类生物流体样本流过Verita平台上的ACE微电极阵列(ACE芯片),同时施加电信号,诱导一个场将生物标志物可逆地捕获到微电极阵列上。分离出的cfDNA、EV-RNA和与细胞外囊泡相关的蛋白质分别使用DNA和RNA特异性染料或抗原特异性、直接偶联抗体(CD63、TSG101、PD-L1、GPC-1)在芯片上直接可视化。分离出的物质也从芯片上洗脱下来,并通过多种方法进行下游分析,包括PCR、RT-PCR、下一代测序(NGS)、毛细管电泳和纳米颗粒尺寸表征。检测工作流程证实了在ACE芯片上从人类生物流体中捕获了cfDNA、EV-RNA和与细胞外囊泡相关的蛋白质。在PCR、NGS和RT-PCR分析中,在直接从芯片分离的cfDNA和RNA中检测到了肿瘤特异性变体和管家基因的mRNA,表明使用该分离工作流程可以从供体样本中分离出高质量的物质。用抗体检测腔内膜蛋白TSG101依赖于膜通透化,这与芯片上存在囊泡一致。蛋白质、形态和尺寸表征表明这些囊泡具有细胞外囊泡的特征。结果表明,未加工的cfDNA、EV-RNA和与细胞外囊泡相关的蛋白质可以在ACE芯片上分离并同时进行荧光分析。与既定下游技术的兼容性也可能允许将该平台用作样本制备方法,用于那些可以受益于获取未加工的外泌体、基因组和蛋白质组生物标志物的工作流程。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ce72/7674311/a80194e9e4d3/fbioe-08-581157-g001.jpg

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