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Substrate specificity-enabled terminal protection for direct quantification of circulating MicroRNA in patient serums

机译:具有底物特异性的末端保护可直接定量测定患者血清中的循环MicroRNA

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摘要

Currently, reported affinity pairings still lack in diversity, and thus terminal protection relying on steric hindrance is restricted in designing nucleic acid-based analytical systems. In this work, resistance to exonuclease is testified by group modification or backbone replacement, and the 3′-phosphate group (P) reveals the strongest exonuclease I-resistant capability. Due to the substrate specificity of enzymatic catalysis, this 3′-P protection works in a “direct mode”. By introducing DNA templated copper nanoparticles, an alkaline phosphatase assay is performed to confirm the 3′-P protection. To display the application of this novel terminal protection, a multifunctional DNA is designed to quantify the model circulating microRNA (hsa-miR-21-5p) in serums from different cancer patients. According to our data, hsa-miR-21-5p-correlated cancers can be evidently distinguished from non-correlated cancers. Meanwhile, the effect of chemotherapy and radiotherapy on breast cancer is evaluated from the perspective of hsa-miR-21-5p residue in serums. Since greatly reducing the limitations of DNA design, this P-induced terminal protection can be facilely integrated with other DNA manipulations, thereby constructing more advanced biosensors with improved analytical performances for clinical applications.
机译:目前,报道的亲和力配对仍然缺乏多样性,因此在设计基于核酸的分析系统时依赖于位阻的末端保护受到限制。在这项工作中,通过基团修饰或骨架取代证明了对核酸外切酶的抗性,并且3'-磷酸基团(P)表现出最强的核酸外切酶I抗性。由于酶催化的底物特异性,这种3'-P保护以“直接模式”起作用。通过引入DNA模板化的铜纳米颗粒,进行碱性磷酸酶测定以确认3'-P保护。为了展示这种新型末端保护的应用,设计了一种多功能DNA来量化来自不同癌症患者血清中的模型循环微RNA(hsa-miR-21-5p)。根据我们的数据,hsa-miR-21-5p相关的癌症可以明显地与非相关的癌症区分开。同时,从血清中hsa-miR-21-5p残留的角度评估了化学疗法和放射疗法对乳腺癌的作用。由于极大地减少了DNA设计的局限性,因此这种P诱导的末端保护可以轻松地与其他DNA操作整合在一起,从而构建出更先进的生物传感器,并为临床应用提供改进的分析性能。

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