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首页> 外文期刊>Angewandte Chemie >A Self-Catabolic Multifunctional DNAzyme Nanosponge for Programmable Drug Delivery and Efficient Gene Silencing
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A Self-Catabolic Multifunctional DNAzyme Nanosponge for Programmable Drug Delivery and Efficient Gene Silencing

机译:用于可编程药物递送和有效基因沉默的自我分解代谢多功能DNAzyme纳米术

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摘要

DNAzyme-based gene therapy holds immense prospects for effectively treating severe diseases, yet is constrained with inefficient delivery and unconditional activation. Herein, we designed a bioinspired self-catabolic DNA nanocapsule for sustaining tumor-specific cascade activation of therapeutic DNAzyme. The exquisite DNAzyme was temporarily masked by the self-excising DNAzyme in the hierarchical rolling circle replication (RCR) nanostructures, thus stayed in an inactive state in physiological fluids. Through the multivalent tumor-anchoring aptamer strands, the RCR nanocapsule was specifically accumulated in cancer cells and was sequentially activated for motivating the ultimate DNAzyme-mediated gene silencing via the intelligent stimuli-responsive cascade DNAzyme activation. By virtue of the programmable RCR assembly strategy, our compact DNAzyme nanoplatform shows great promise for developing versatile smart gene therapeutics and personalized nanomedicines.
机译:以DNA酶为基础的基因治疗在有效治疗严重疾病方面有着巨大的前景,但由于传递效率低和无条件激活而受到限制。在此,我们设计了一种仿生自分解代谢DNA纳米胶囊,用于维持治疗性DNA酶的肿瘤特异性级联激活。精细的DNA酶暂时被分层滚圈复制(RCR)纳米结构中的自切DNA酶掩盖,因此在生理流体中处于非活性状态。通过多价肿瘤锚定适配子链,RCR纳米胶囊在癌细胞中特异性积累,并通过智能刺激反应级联DNA酶激活,顺序激活以激发最终的DNA酶介导的基因沉默。凭借可编程RCR组装策略,我们紧凑的DNAzyme纳米平台在开发多功能智能基因疗法和个性化纳米药物方面展现了巨大的前景。

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