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Enhanced Recognition of Single-Base Mismatch Using Locked Nucleic Acid-Integrated Hairpin DNA Probes Revealed by Atomic Force Microscopy Nanolithography

机译:增强的识别单碱基不匹配使用原子力显微镜纳米光刻揭示的锁定核酸整合发夹DNA探针。

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摘要

Probe design is a critical parameter in successful DNA and RNA target detection. In this proof-of-concept study, we evaluated the single-base mismatch recognition power of surface immobilized and self-assembled stem-loop hairpin DNA oligonucleotide probes modified to contain locked nucleic acid residues (LNA-HP). The stiffness change in conjunction with the stem opening of the interfacial molecules before and after hybridization led to clear variations of the overall film thickness or miniaturized nanospot height, which could be directly measured using an atomic force microscopy (AFM) nanolithography technique. Particularly, LNA-HP achieved highly differentiable readouts between perfectly complementary and singly mismatched targets (discrimination ratio as high as 2 to 3), outperforming the selectivity of its linear and hairpin counterparts with no LNA modification.
机译:探针设计是成功检测DNA和RNA靶标的关键参数。在此概念验证研究中,我们评估了表面固定的和自组装的茎环发夹DNA寡核苷酸探针经修饰以包含锁定的核酸残基(LNA-HP)的单碱基错配识别能力。杂交前后的刚度变化与界面分子的茎开口相结合导致总膜厚度或最小化纳米点高度的明显变化,这可以使用原子力显微镜(AFM)纳米光刻技术直接测量。特别是,LNA-HP在完全互补和单个错配的靶标之间(区分率高达2到3)实现了高度可区分的读数,胜过了其线性和发夹对应物的选择性,而无需进行LNA修饰。

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