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基于流式细胞术的新型检测方法进行癌症相关 mRNA 表达分析。

Cancer-related mRNA expression analysis using a novel flow cytometry-based assay.

机构信息

Department of Clinical Chemistry, Microbiology and Immunology, Ghent University, Ghent, Belgium.

Department of Paediatric Haematology-Oncology and Stem Cell Transplantation, Ghent University Hospital, Ghent, Belgium.

出版信息

Cytometry B Clin Cytom. 2018 Jul;94(4):565-575. doi: 10.1002/cyto.b.21593. Epub 2017 Nov 2.

Abstract

BACKGROUND

Cancer-related gene expression data mostly originate from unfractionated bulk samples, leading to "expression averaging" of heterogeneous populations. Multicolor flow cytometry (FCM) may distinguish heterogeneous populations based on the phenotypic characterization of single-cells, but is not applicable for RNA targets. Here, we evaluated the PrimeFlow™ RNA assay, a novel FCM-based assay designed to measure gene expressions, in two cancer entities with high and low RNA target levels.

METHODS

Neuroblastoma (NB) cell lines were studied for MYCN gene expression by PrimeFlow™ and compared with the gold standard, RT-qPCR. Dilution series of NB cells (0.10-11%) were prepared to evaluate performance in small cell populations. Diagnostic material of de novo acute myeloid leukemia (AML) patients was used to measure Wilms' tumor 1 (WT1) expression in bulk leukemic cells and rare subsets, e.g. leukemic stem cells (LSCs). FCM analysis was performed on a FACSCanto II (BD Biosciences) using Infinicyt™ (Cytognos ) for data analysis. mRNA expression was reported by normalized mean fluorescence intensity (MFI) values and staining indices.

RESULTS

MYCN mRNA quantified by PrimeFlow™ significantly correlated with RT-qPCR and remained detectable in small (0.1%) populations. Using PrimeFlow , WT1 levels were shown to be significantly higher in AML patient samples with WT1 overexpression, previously defined by RT-qPCR. Moreover, WT1 overexpression was distinguishable between heterogeneous cell populations and remained measurable in rare LSCs.

CONCLUSION

PrimeFlow™ is a sensitive technique to investigate mRNA expressions, with high concordance to RT-qPCR. High (MYCN) and subtle (WT1) overexpressed mRNA targets can be quantified in heterogeneous and rare subpopulations e.g. LSCs. © 2017 International Clinical Cytometry Society.

摘要

背景

与癌症相关的基因表达数据主要源自未分馏的批量样本,导致异质群体的“表达平均化”。多色流式细胞术(FCM)可以基于单细胞的表型特征来区分异质群体,但不适用于 RNA 靶标。在这里,我们评估了 PrimeFlow™ RNA 测定法,这是一种新的基于 FCM 的测定法,旨在测量基因表达,该方法适用于两种 RNA 靶标水平高低不同的癌症实体。

方法

用 PrimeFlow™ 研究神经母细胞瘤(NB)细胞系的 MYCN 基因表达,并与金标准 RT-qPCR 进行比较。制备 NB 细胞的稀释系列(0.10-11%),以评估在小细胞群体中的性能。使用新发急性髓系白血病(AML)患者的诊断材料,在批量白血病细胞和稀有亚群(如白血病干细胞(LSCs))中测量 Wilms' 肿瘤 1(WT1)的表达。在 FACSCanto II (BD Biosciences)上进行 FCM 分析,并使用 Infinicyt™(Cytognos)进行数据分析。mRNA 表达通过标准化平均荧光强度(MFI)值和染色指数报告。

结果

PrimeFlow™ 定量的 MYCN mRNA 与 RT-qPCR 显著相关,在小(0.1%)群体中仍可检测到。使用 PrimeFlow,先前通过 RT-qPCR 定义的 WT1 过表达的 AML 患者样本中的 WT1 水平显著升高。此外,WT1 过表达可在异质细胞群体之间区分,并可在稀有 LSCs 中测量到。

结论

PrimeFlow™ 是一种敏感的技术,可用于研究 mRNA 表达,与 RT-qPCR 具有高度一致性。可以在异质和稀有亚群(如 LSCs)中定量高(MYCN)和细微(WT1)过表达的 mRNA 靶标。

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