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基于金属有机骨架纳米粒子的 miRNA 载体的表面工程:提高 RNA 稳定性、细胞内递送和协同治疗。

Surface engineering of metal-organic framework nanoparticles-based miRNA carrier: Boosting RNA stability, intracellular delivery and synergistic therapy.

机构信息

Department of Chemistry, Technical University of Denmark, 2800 Kongens Lyngby, Denmark.

Department of Health Technology, Technical University of Denmark, 2800 Kongens Lyngby, Denmark.

出版信息

J Colloid Interface Sci. 2025 Jan;677(Pt B):429-440. doi: 10.1016/j.jcis.2024.08.074. Epub 2024 Aug 12.

DOI:10.1016/j.jcis.2024.08.074
PMID:39153246
Abstract

MicroRNAs (miRNAs) are small noncoding RNAs that are critical for the regulation of multiple physiological and pathological processes, thus holding great clinical potential. However, the therapeutic applications of miRNAs are severely limited by their biological instability and poor intracellular delivery. Herein, we describe a dual-layers surface engineering strategy to design an efficient miRNA delivery nanosystem based on metal-organic frameworks (MOFs) incorporating lipid coating. The resulting nanoparticle system was demonstrated to protect miRNA from ribonuclease degradation, enhance cellular uptake and facilitate lysosomal escape. These ensured effective miRNA mediated gene therapy, which synergized with MOF-specific photodynamic therapy and pre-encapsulated doxorubicin (Dox) chemotherapy to provide a multifunctional with therapeutic effectiveness against cencer cells The mechanisms of miRNA binding and Dox loading were revealed, demonstrating the potential of the present MOFs surface-engineered strategy to overcome their inherent pore-size restriction for macromolecular miRNA carrying, enableefficient co-delivery. In vitro studies revealed the potential of our multifunctional system for miRNA delivery and the demonstrated the therapeutic effectiveness against cancer cells, thereby providing a versatile all-in-one MOFs strategy for delivery of nucleic acids and diverse therapeutic molecules in synergistic therapy.

摘要

微小 RNA(miRNAs)是一种小型非编码 RNA,对多种生理和病理过程的调节至关重要,因此具有巨大的临床潜力。然而,miRNAs 的治疗应用受到其生物不稳定性和细胞内递药效率差的严重限制。在此,我们描述了一种双层表面工程策略,用于设计基于金属有机骨架(MOFs)并整合脂质涂层的高效 miRNA 递药纳米系统。所得到的纳米颗粒系统被证明可以保护 miRNA 免受核糖核酸酶降解,增强细胞摄取并促进溶酶体逃逸。这确保了有效的 miRNA 介导的基因治疗,与 MOF 特异性光动力治疗和预包封的阿霉素(Dox)化疗协同作用,为癌症细胞提供了多功能的治疗效果。揭示了 miRNA 结合和 Dox 加载的机制,表明了本 MOFs 表面工程策略具有克服其内在的孔尺寸限制以携带大分子 miRNA 的潜力,实现高效共递药。体外研究揭示了我们的多功能系统在 miRNA 递药方面的潜力,并证明了对癌细胞的治疗效果,从而为协同治疗中核酸和多种治疗分子的递药提供了一种通用的一体式 MOFs 策略。

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