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外周血单个核细胞的一种分析灵敏和诊断敏感的 RNA 提取和 RT-qPCR 方案。

An Analytically and Diagnostically Sensitive RNA Extraction and RT-qPCR Protocol for Peripheral Blood Mononuclear Cells.

机构信息

Centre for Molecular Therapeutics, Australian Institute of Tropical Health & Medicine, James Cook University, Cairns, QLD, Australia.

Centre for Tropical Bioinformatics and Molecular Biology, Australian Institute of Tropical Health & Medicine, James Cook University, Cairns, QLD, Australia.

出版信息

Front Immunol. 2020 Mar 20;11:402. doi: 10.3389/fimmu.2020.00402. eCollection 2020.

Abstract

Reliable extraction and sensitive detection of RNA from human peripheral blood mononuclear cells (PBMCs) is critical for a broad spectrum of immunology research and clinical diagnostics. RNA analysis platforms are dependent upon high-quality and high-quantity RNA; however, sensitive detection of specific responses associated with high-quality RNA extractions from human samples with limited PBMCs can be challenging. Furthermore, the comparative sensitivity between RNA quantification and best-practice protein quantification is poorly defined. Therefore, we provide herein a critical evaluation of the wide variety of current generation of RNA-based kits for PBMCs, representative of several strategies designed to maximize sensitivity. We assess these kits with a reverse transcription quantitative PCR (RT-qPCR) assay optimized for both analytically and diagnostically sensitive cell-based RNA-based applications. Specifically, three RNA extraction kits, one post-extraction RNA purification/concentration kit, four SYBR master-mix kits, and four reverse transcription kits were tested. RNA extraction and RT-qPCR reaction efficiency were evaluated with commonly used reference and cytokine genes. Significant variation in RNA expression of reference genes was apparent, and absolute quantification based on cell number was established as an effective RT-qPCR normalization strategy. We defined an optimized RNA extraction and RT-qPCR protocol with an analytical sensitivity capable of single cell RNA detection. The diagnostic sensitivity of this assay was sufficient to show a CD8 T cell peptide epitope hierarchy with as few as 1 × 10 cells. Finally, we compared our optimized RNA extraction and RT-qPCR protocol with current best-practice immune assays and demonstrated that our assay is a sensitive alternative to protein-based assays for peptide-specific responses, especially with limited PBMCs number. This protocol with high analytical and diagnostic sensitivity has broad applicability for both primary research and clinical practice.

摘要

从人类外周血单核细胞 (PBMC) 中可靠地提取和灵敏地检测 RNA 对于广泛的免疫学研究和临床诊断至关重要。RNA 分析平台依赖于高质量和高数量的 RNA;然而,从 PBMC 数量有限的人类样本中提取高质量 RNA 并进行灵敏检测与特定反应相关,这可能具有挑战性。此外,RNA 定量与最佳实践蛋白定量之间的相对灵敏度尚未得到明确界定。因此,我们在此处对当前一代的各种基于 RNA 的 PBMC 试剂盒进行了批判性评估,这些试剂盒代表了几种旨在提高灵敏度的策略。我们使用针对基于细胞的基于 RNA 的分析和诊断应用均具有灵敏性的逆转录定量 PCR (RT-qPCR) 测定法来评估这些试剂盒。具体而言,测试了三种 RNA 提取试剂盒、一种提取后 RNA 纯化/浓缩试剂盒、四种 SYBR 主混合物试剂盒和四种逆转录试剂盒。使用常用的参考和细胞因子基因评估 RNA 提取和 RT-qPCR 反应效率。明显看出参考基因的 RNA 表达存在显著差异,并且基于细胞数的绝对定量被确立为有效的 RT-qPCR 归一化策略。我们定义了一种优化的 RNA 提取和 RT-qPCR 方案,具有能够检测单细胞 RNA 的分析灵敏度。该测定法的诊断灵敏度足以显示 CD8 T 细胞肽表位层次结构,所需细胞数低至 1×10 个。最后,我们将我们优化的 RNA 提取和 RT-qPCR 方案与当前的最佳实践免疫测定法进行了比较,并证明我们的测定法是一种替代基于蛋白质的测定法的灵敏方法,特别适用于 PBMC 数量有限的情况。这种具有高分析和诊断灵敏度的方案具有广泛的应用,既适用于基础研究,也适用于临床实践。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/494c/7098950/fc2e3ced763f/fimmu-11-00402-g0001.jpg

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