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RNA as a Boiling-Resistant Anionic Polymer Material To Build Robust Structures with Defined Shape and Stoichiometry

机译:RNA作为一种耐沸腾的阴离子聚合物材料,可构建具有确定形状和化学计量比的坚固结构

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摘要

RNA is a polyribonucleic acid belonging to a special class of anionic polymers, holding a unique property of self-assembly that is controllable in the construction of structures with defined size, shape, and stoichiometry. We report here the use of RNA as polymers to fabricate boiling-resistant triangular nanoscaffolds, which were used to construct hexagons and patterned hexagonal arrays. The RNA triangular scaffolds demonstrated promising potential to construct fluorogenic probes and therapeutic agents as functionalization with siRNA, ribozyme, folate, and fluorogenic RNA aptamers revealed independent functional activity of each RNA moiety. The ribozyme was able to cleave hepatitis genomic RNA fragments, the siRNA silenced the target genes, and all fluorogenic RNA aptamers retained their fluorescence emission property. The creation of boiling-temperature-resistant RNA nanoparticles opens a new dimension of RNA as a special polymer, feasible in industrial and nanotechnological applications.
机译:RNA是属于一类特殊的阴离子聚合物的聚核糖核酸,具有独特的自组装特性,可在定义大小,形状和化学计量结构的构建过程中进行控制。我们在这里报告使用RNA作为聚合物来制造耐沸腾的三角形纳米支架,该支架用于构建六边形和图案化的六边形阵列。 RNA三角支架显示出构建荧光探针和治疗剂的潜在潜力,因为使用siRNA,核酶,叶酸和荧光RNA适体的功能化揭示了每个RNA部分的独立功能活性。核酶能够裂解肝炎基因组RNA片段,siRNA使靶基因沉默,所有荧光RNA适体均保持其荧光发射特性。耐沸腾RNA纳米颗粒的创建为RNA作为一种特殊的聚合物打开了一个新的领域,在工业和纳米技术应用中都是可行的。

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