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DNA Nanoflowers for Multiplexed Cellular Imaging and Traceable Targeted Drug Delivery

机译:DNA纳米花用于细胞成像和可追踪的靶向药物传递。

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摘要

We present a facile approach to make aptamer-conjugated FRET (fluorescent resonance energy transfer) nanoflowers (NFs) through rolling circle replication for multiplexed cellular imaging and traceable targeted drug delivery. The NFs can exhibit multi-fluorescence emissions by a single-wavelength excitation as a result of the DNA matrix covalently incorporated with three dye molecules able to perform FRET. Compared with the conventional DNA nanostructure assembly, NF assembly is independent of template sequences, avoiding the otherwise complicated design of DNA building blocks assembled into nanostructures by base-pairing. The NFs were uniform and exhibited high fluorescence intensity and excellent photostability. Combined with the ability of traceable targeted drug delivery, these colorful DNA NFs provide a novel system for applications in multiplex fluorescent cellular imaging, effective screening of drugs, and therapeutic protocol development.
机译:我们提出了一种简便的方法,通过滚环复制来制备适体缀合的FRET(荧光共振能量转移)纳米花(NFs),以进行多路细胞成像和可追踪的靶向药物递送。由于DNA基质与三个能够执行FRET的染料分子共价结合,因此NFs可以通过单波长激发显示多荧光发射。与传统的DNA纳米结构组装相比,NF组装独立于模板序列,避免了通过碱基配对组装成纳米结构的DNA构建块的复杂设计。 NF均匀且显示高荧光强度和优异的光稳定性。这些彩色DNA NF结合可追踪的靶向药物输送能力,为在多重荧光细胞成像,药物的有效筛选和治疗方案开发中的应用提供了一个新颖的系统。

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