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Pyrene-functionalized oligonucleotides and locked nucleic acids (LNAs): Tools for fundamental research, diagnostics, and nanotechnology

机译:yr功能化的寡核苷酸和锁核酸(LNA):基础研究,诊断和纳米技术的工具

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摘要

Pyrene-functionalized oligonucleotides (PFOs) are increasingly explored as tools in fundamental research, diagnostics and nanotechnology. Their popularity is linked to the ability of pyrenes to function as polarity-sensitive and quenchable fiuorophores, excimer-generating units, aromatic stacking moieties and nucleic acid duplex intercalators. These characteristics have enabled development of PFOs for detection of complementary DNA/RNA targets, discrimination of single nucleotide polymorphisms (SNPs), and generation of π-arrays on nucleic acid scaffolds. This critical review will highlight the physical properties and applications of PFOs that are likely to provide high degree of positional control of the chromophore in nucleic acid complexes. Particular emphasis will be placed on pyrene-functionalized Locked Nucleic Acids (LNAs) since these materials display interesting properties such as fluorescence quantum yields approaching unity and recognition of mixed-sequence double stranded DNA (144 references).
机译:fundamental官能化的寡核苷酸(PFO)越来越多地被用作基础研究,诊断和纳米技术中的工具。它们的流行与of作为极性敏感和可猝灭的荧光团,准分子产生单元,芳族堆积部分和核酸双链体嵌入剂的功能有关。这些特征使得能够开发用于检测互补DNA / RNA靶标的PFO,识别单核苷酸多态性(SNP)以及在核酸支架上生成π阵列。这项重要的综述将着重介绍PFO的物理性质和应用,这些物质可能对核酸复合物中的生色团提供高度的位置控制。由于这些材料显示出令人感兴趣的特性,例如接近统一的荧光量子产率以及对混合序列双链DNA的识别(144个参考文献),因此将特别强调pyr官能化的锁定核酸(LNA)。

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