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Gold-DNA nanosunflowers for efficient gene silencing with controllable transformation

机译:金-DNA纳米向日葵可实现可控转化的有效基因沉默

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摘要

The development of an efficient delivery system for enhanced and controlled gene interference–based therapeutics is still facing great challenges. Fortunately, the flourishing field of nanotechnology provides more effective strategies for nucleic acid delivery. Here, the triplex-forming oligonucleotide sequence and its complementary strand were used to mediate self-assembly of ultrasmall gold nanoparticles. The obtained sunflower-like nanostructures exhibited strong near-infrared (NIR) absorption and photothermal conversion ability. Upon NIR irradiation, the large-sized nanostructure could disassemble and generate ultrasmall nanoparticles modified with c-myc oncogene silencing sequence, which could directly target the cell nucleus. Moreover, the controlled gene silencing effect could be realized by synergistically controlling the preincubation time with the self-assembled nanostructure (in vitro and in vivo) and NIR irradiation time point. This study provides a new approach for constructing more efficient and tailorable nanocarriers for gene interference applications.
机译:为增强和控制基于基因干扰的治疗药物开发有效的递送系统仍面临巨大挑战。幸运的是,纳米技术的蓬勃发展为核酸输送提供了更有效的策略。在这里,形成三链体的寡核苷酸序列及其互补链被用来介导超小金纳米颗粒的自组装。获得的向日葵状纳米结构表现出强的近红外(NIR)吸收和光热转化能力。在近红外辐射下,大尺寸的纳米结构可以分解并生成经c-myc致癌基因沉默序列修饰的超小纳米颗粒,其可以直接靶向细胞核。此外,可通过与自组装纳米结构(体外和体内)和NIR照射时间点协同控制预孵育时间来实现受控的基因沉默效果。这项研究为构建用于基因干扰应用的更有效和可定制的纳米载体提供了一种新方法。

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