螺吡喃作为一种潜在的双链RNA检测分子诊断工具。

BMC biomedical engineering Pub Date : 2019-03-18 eCollection Date: 2019-01-01 DOI:10.1186/s42490-019-0008-x
Ahsan Ausaf Ali, Minjeong Kang, Raisa Kharbash, Yoosik Kim
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引用次数: 9

摘要

背景:长双链rna (dsRNAs)是一种双链rna,存在于哺乳动物细胞中可以诱导免疫反应。这些rna在历史上与病毒复制有关,但最近的证据表明,人类细胞自然编码内源性dsRNAs,可以在免疫反应之外的细胞环境中调节抗病毒机制。结果:在本研究中,我们使用光致变色有机化合物螺吡喃来分析和定量dsRNA的表达。我们发现开放形式的螺吡喃,merocyanine,可以插入RNA碱基对之间,这导致质子化和改变化合物的光谱性质。通过量化光谱变化,我们可以检测和量化合成和细胞的dsRNA表达水平。我们进一步证明螺旋吡喃可以作为一种分子诊断工具来分析内源性表达的dsRNAs。特别是,我们发现,当结直肠癌细胞接受5-aza-2'-脱氧胞苷(fda批准的一种用于化疗的dna去甲基化剂)治疗时,螺吡喃可以强有力地检测到dsRNA水平的升高,从而证明了螺吡喃用于预测对药物治疗的反应性。结论:由于dsRNA是病毒的特征,dsRNA的积累与多种退行性疾病有关,我们的工作建立了螺旋吡喃作为基于dsRNA表达的简单光谱工具诊断人类疾病的潜在应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Spiropyran as a potential molecular diagnostic tool for double-stranded RNA detection.

Background: Long double-stranded RNAs (dsRNAs) are duplex RNAs that can induce immune response when present in mammalian cells. These RNAs are historically associated with viral replication, but recent evidence suggests that human cells naturally encode endogenous dsRNAs that can regulate antiviral machineries in cellular contexts beyond immune response.

Results: In this study, we use photochromic organic compound spiropyran to profile and quantitate dsRNA expression. We show that the open form of spiropyran, merocyanine, can intercalate between RNA base pairs, which leads to protonation and alteration in the spectral property of the compound. By quantifying the spectral change, we can detect and quantify dsRNA expression level, both synthetic and cellular. We further demonstrate that spiropyrans can be used as a molecular diagnostic tool to profile endogenously expressed dsRNAs. Particularly, we show that spiropyrans can robustly detect elevated dsRNA levels when colorectal cancer cells are treated with 5-aza-2'-deoxycytidine, an FDA-approved DNA-demethylating agent used for chemotherapy, thus demonstrating the use of spiropyran for predicting responsiveness to the drug treatment.

Conclusion: As dsRNAs are signature of virus and accumulation of dsRNAs is implicated in various degenerative disease, our work establishes potential application of spiropyrans as a simple spectral tool to diagnose human disease based on dsRNA expression.

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