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具有一对主钥匙的放大药物输送系统,用于触发精确的化学-光热治疗药物释放。

Amplified Drug Delivery System with a Pair of Master Keys Triggering Precise Drug Release for Chemo-Photothermal Therapy.

机构信息

Key Laboratory of Optic-electric Sensing and Analytical Chemistry for Life Science, MOE; Shandong Key Laboratory of Biochemical Analysis; College of Chemistry and Molecular Engineering, College of Chemical Engineering, Qingdao University of Science and Technology, Qingdao 266042, P. R. China.

出版信息

Anal Chem. 2022 Aug 23;94(33):11538-11548. doi: 10.1021/acs.analchem.2c01663. Epub 2022 Aug 12.

Abstract

A versatile drug delivery system (DDS) enabling highly effective and targeting oncotherapy has always been of great significance in medical research. In the development of a stimuli-responsive DDS, compared with a single-factor stimulation DDS, a multifactor activation DDS has higher therapeutic specificity between diseased and normal tissue, but there are challenges in drug-release efficiency and united targeting cancer therapy. Herein, a novel dual-microRNA (dual-miRNA)-mediated 1:N-amplified DDS is fabricated. The gold nanocage (AuNC) was synthesized and used as a carrier. A DNA bridge motif as a nanolock (DNA bridge nanolock) was designed and modified on the surface of AuNCs, which could seal the holes of AuNCs. Using the dual-miRNAs as a pair of master keys, through DNA strand migration and DNAzyme self-assembly, a cell endogenous substance Mg-dependent DNAzyme cyclic shear reaction could perform the function of the master keys to open multiple locks for the enhanced release of doxorubicin from the AuNCs. In addition, under near-infrared irradiation, via absorption of light and heat release, the AuNC is activated to perform the function of photothermal therapy. Thereby, the system achieves precise chemo-photothermal therapy. Using the in vitro and in vivo anti-tumor analysis, the DDS could be proved to present a novel design of enhanced and targeted drug-release system for highly effective cancer therapy.

摘要

一种多功能药物输送系统(DDS),能够实现高效靶向肿瘤治疗,在医学研究中一直具有重要意义。在刺激响应型 DDS 的开发中,与单因素刺激 DDS 相比,多因素激活 DDS 在疾病组织和正常组织之间具有更高的治疗特异性,但在药物释放效率和联合靶向癌症治疗方面存在挑战。本文构建了一种新型双 microRNA(dual-miRNA)介导的 1:N 放大 DDS。合成了金纳米笼(AuNC)并用作载体。设计并修饰了 AuNC 表面上的 DNA 桥基序作为纳米锁(DNA 桥纳米锁),该纳米锁可以密封 AuNC 的孔。利用双 miRNA 作为一对主钥匙,通过 DNA 链迁移和 DNA 酶自组装,细胞内物质 Mg 依赖性 DNA 酶循环剪切反应可以作为主钥匙的功能,实现增强的阿霉素从 AuNC 中的释放。此外,在近红外辐射下,通过光吸收和热释放,AuNC 被激活以执行光热治疗的功能。由此,该系统实现了精确的化疗-光热治疗。通过体外和体内抗肿瘤分析,该 DDS 可以证明是一种用于高效癌症治疗的新型增强型和靶向药物释放系统的设计。

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