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A Novel Ultrasensitive Hybridization-Based ELISA Method for 2-Methoxyphosphorothiolate MicroRNAs and Its In vitro and In vivo Application

机译:基于超灵敏杂交的2-甲氧基硫代磷酸酯微RNA ELISA新方法及其体内外应用

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摘要

MicroRNAs (miRNAs) are endogenous, small non-coding RNAs that bind to target mRNAs and regulate their expression. Recent evidence has indicated the involvement of miRNAs in human malignancies. It has been suggested that aberrantly down-regulated or up-regulated miRNAs may be replaced with synthetic miRNAs or antagomiRNAs, respectively, and restore normal cell functions. As therapeutic development requires analytical support, we developed and validated an ultrasensitive and selective assay for quantification of synthetic 2′-methoxyphosphorothiolate-miRNA in mouse plasma and cell lysate for the first time. The method is based on a hybridization-ligation fluorescence enzyme-linked immunosorbent assay and has provided a linear dynamic range of 10-1,000,000 pM for three synthetic miRNAs both singly and in a mixture. The intra- and inter-day coefficients of variation were <20% and the accuracy values nearly 100%. Using this assay, we performed pharmacokinetic studies of three synthetic miRNAs in mice treated with a single i.v. bolus dose of 7.5 mg kg−1. The 2-methoxyphosphorothiolate-miRNAs reached peak concentrations in the μM and nM ranges in plasma and bone marrow, respectively, and remained measurable at 24 h. These concentrations are in a range that shows biological activities. We conclude that this method provides a general and valuable tool for the pharmacologic study and clinical development of synthetic miRNAs.
机译:微小RNA(miRNA)是内源的小型非编码RNA,可与目标mRNA结合并调节其表达。最近的证据表明,miRNA与人类恶性肿瘤有关。已经提出,异常下调或上调的miRNA可以分别用合成的miRNA或antagomiRNA代替,并恢复正常的细胞功能。由于治疗的发展需要分析支持,因此我们首次开发并验证了一种超灵敏的选择性测定方法,用于定量测定小鼠血浆和细胞裂解物中的合成2'-甲氧基硫代磷酸酯-miRNA。该方法基于杂交-连接荧光酶联免疫吸附试验,并且为三种合成的miRNA单独或混合提供了10-1,000,000 pM的线性动态范围。日内和日间变异系数小于20%,准确度值接近100%。使用此测定法,我们对用单次静脉注射治疗的小鼠中的三种合成miRNA进行了药代动力学研究。推注剂量为7.5 mg kg -1 。 2-甲氧基硫代磷酸硫酯-miRNA在血浆和骨髓中分别达到μM和nM范围内的峰值浓度,并在24小时时仍可测量。这些浓度在显示生物活性的范围内。我们得出结论,该方法为合成miRNA的药理研究和临床开发提供了通用且有价值的工具。

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