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A Targeted DNAzyme-Nanocomposite Probe Equipped with Built-in Zn2+ Arsenal for Combined Treatment of Gene Regulation and Drug Delivery

机译:配备内置Zn2 +武库的靶向DNAzyme-纳米复合探针用于基因调节和药物递送的联合治疗

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摘要

As catalytic nucleic acids, DNAzymes have been extensively used in the design of sensing platforms. However, their potentials as intelligent drug carriers for responsive drug release in gene therapy and chemotherapy were rarely explored. Herein, we report a dual-functional probe composed of gold nanoparticles (GNPs), catalytic Zn2+-dependent DNAzyme, anticancer drug doxorubicin (Dox), targeted AS1411 aptamer and acid-decomposable ZnO quantum dots (ZnO QDs) to achieve intracellular gene regulation and drug delivery in a controlled manner. By means of aptamer-guided targeting and receptor-mediated endocytosis, the probes were specifically internalized into the HeLa cells and trapped in the acidic endo-/lysosomes, where the ZnO QDs as the built-in Zn2+ arsenal were promptly dissolved to offer Zn2+, leading to the activation of DNAzyme to cleave the substrate strands, and subsequent drug release. Meanwhile, as designed, one part of the cleaved substrate, hybridized with the overexpressed miR-21 in the target cells, thereby declining its intracellular level. Taken together, the down-regulation of miR-21 has a synergistic effect with Dox to efficiently eradicate the cancer cells. Thus, the favorable biocompatibility, cancer cell specificity and combined treatment make the probe promising for therapy of multidrug-resistant cancer and in vivo application.
机译:作为催化核酸,DNA酶已广泛用于传感平台的设计中。然而,很少有人探索它们作为基因疗法和化学疗法中响应药物释放的智能药物载体的潜力。在此,我们报道了一种由金纳米颗粒(GNP),催化性Zn 2 + 依赖型DNAzyme,抗癌药阿霉素(Dox),靶向AS1411适体和酸可分解的ZnO量子点组成的双功能探针( ZnO QDs)以受控方式实现细胞内基因调控和药物递送。通过适体引导的靶向作用和受体介导的内吞作用,将探针特异性内化到HeLa细胞中并捕获在酸性内-/溶酶体中,其中ZnO QD作为内置的Zn 2 + 阿森纳迅速溶解以提供Zn 2 + ,导致DNAzyme激活以切割底物链,并随后释放药物。同时,按照设计,切割的底物的一部分与靶细胞中过表达的miR-21杂交,从而降低其细胞内水平。综上所述,miR-21的下调与Dox具有协同作用,可有效根除癌细胞。因此,良好的生物相容性,癌细胞特异性和联合治疗使该探针有望用于治疗多药耐药性癌症和体内应用。

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