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卵巢癌细胞系和血浆样本中长链非编码HOTAIR RNA的无PCR检测

PCR-Free Detection of Long Non-Coding HOTAIR RNA in Ovarian Cancer Cell Lines and Plasma Samples.

作者信息

Soda Narshone, Umer Muhammad, Kashaninejad Navid, Kasetsirikul Surasak, Kline Richard, Salomon Carlos, Nguyen Nam-Trung, Shiddiky Muhammad J A

机构信息

School of Environment and Science (ESC), Griffith University, Nathan Campus, QLD 4111, Australia.

Queensland Micro-and Nanotechnology Centre (QMNC), Griffith University, Nathan Campus, QLD 4111, Australia.

出版信息

Cancers (Basel). 2020 Aug 10;12(8):2233. doi: 10.3390/cancers12082233.

Abstract

Long non-coding RNA HOX transcript antisense intergenic RNA (HOTAIR) is one of the promising biomarkers that has widely been used in determining the stages of many cancers, including ovarian cancer. In cancer diagnostics, the two key analytical challenges for detecting long non-coding RNA biomarkers are i) the low concentration levels (nM to fM range) in which they are found and ii) the analytical method where broad dynamic range is required (four to six orders of magnitude) due to the large variation in expression levels for different HOTAIR RNAs. To meet these challenges, we report on a biosensing platform for the visual (colorimetric) estimation and subsequent electrochemical quantification of ovarian-cancer-specific HOTAIR using a screen-printed gold electrode (SPE-Au). Our assay utilizes a two-step strategy that involves (i) magnetic isolation and purification of target HOTAIR sequences and (ii) subsequent detection of isolated sequences using a sandwich hybridization coupled with horseradish peroxidase (HRP)-catalyzed reaction of 3,3',5,5'-tetramethylbenzidine (TMB) in the presence of hydrogen peroxide. The assay achieved a detection limit of 1.0 fM HOTAIR in spiked buffer samples with excellent reproducibility (% RSD ≤ 5%, for = 3). It was successfully applied to detect HOTAIR in cancer cell lines and a panel of plasma samples derived from patients with ovarian cancer. The analytical performance of the method was validated with standard RT-qPCR. We believe that the proof of concept assay reported here may find potential use in routine clinical settings for the screening of cancer-related lncRNAs.

摘要

长链非编码RNA HOX转录反义基因间RNA(HOTAIR)是一种很有前景的生物标志物,已被广泛用于确定包括卵巢癌在内的多种癌症的分期。在癌症诊断中,检测长链非编码RNA生物标志物面临的两个关键分析挑战是:i)它们所处的低浓度水平(纳摩尔至飞摩尔范围);ii)由于不同HOTAIR RNA的表达水平差异很大,需要具有宽动态范围(四到六个数量级)的分析方法。为了应对这些挑战,我们报告了一种生物传感平台,用于使用丝网印刷金电极(SPE-Au)对卵巢癌特异性HOTAIR进行可视化(比色)估计以及随后的电化学定量。我们的检测采用两步策略,包括(i)对目标HOTAIR序列进行磁分离和纯化,以及(ii)随后使用夹心杂交结合辣根过氧化物酶(HRP)催化的3,3',5,5'-四甲基联苯胺(TMB)在过氧化氢存在下的反应来检测分离的序列。该检测在加标缓冲液样品中实现了1.0 fM HOTAIR的检测限,具有出色的重现性(对于n = 3,%RSD≤5%)。它已成功应用于检测癌细胞系和一组来自卵巢癌患者的血浆样本中的HOTAIR。该方法的分析性能通过标准RT-qPCR进行了验证。我们相信,本文报道的概念验证检测可能在常规临床环境中用于筛查癌症相关的长链非编码RNA。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/634b/7465380/288470dddc94/cancers-12-02233-g001.jpg

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