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首页> 外文期刊>Journal of Controlled Release: Official Journal of the Controlled Release Society >A novel collagen-nanohydroxyapatite microRNA-activated scaffold for tissue engineering applications capable of efficient delivery of both miR-mimics and antagomiRs to human mesenchymal stem cells
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A novel collagen-nanohydroxyapatite microRNA-activated scaffold for tissue engineering applications capable of efficient delivery of both miR-mimics and antagomiRs to human mesenchymal stem cells

机译:一种新型的胶原蛋白-纳米羟基磷灰石microRNA激活的支架,用于组织工程应用,能够将miR模拟物和antagomiRs有效地递送至人间充质干细胞

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Manipulation of gene expression through the use of microRNAs (miRNAs) offers tremendous potential for the field of tissue engineering. However, the lack of sufficient site-specific and bioactive delivery systems has severely hampered the clinical translation of miRNA-based therapies. In this study, we developed a novel non-viral bioactive delivery platform for miRNA mimics and antagomiRs to allow for a vast range of therapeutic applications. By combining nanohydroxyapatite (nHA) particles with reporter miRNAs (nanomiRs) and collagen-nanohydroxyapatite scaffolds, this work introduces the first non-viral, non-lipid platform to date, capable of efficient delivery of mature miRNA molecules to human mesenchymal stem cells (hMSCs), a particularly difficult cell type to transfect effectively, with minimal treatment-associated cytotoxicity. Firstly, miRNAs were successfully delivered to hMSCs in monolayer, with internalisation efficiencies of 17.4 and 39.6% for nanomiR-mimics and nanoantagomiRs respectively, and both nanomiR-mimics and nanoantagomiRs yielded sustained interfering activity of greater than 90% in monolayer over 7 days. When applied to 3D scaffolds, significant RNA interference of 20% for nanomiR-mimics and 88.4% for nanoantagomiRs was achieved with no cytotoxicity issues over a 7 day period. In summary, in-house synthesised non-viral nHA particles efficiently delivered reporter miRNAs both in monolayer and on scaffolds demonstrating the immense potential of this innovative miRNA-activated scaffold system for tissue engineering applications. (C) 2014 Elsevier B.V. All rights reserved.
机译:通过使用microRNA(miRNA)操纵基因表达为组织工程领域提供了巨大的潜力。然而,缺乏足够的位点特异性和生物活性传递系统严重地阻碍了基于miRNA的疗法的临床翻译。在这项研究中,我们为miRNA模拟物和antagomiRs开发了一种新颖的非病毒生物活性传递平台,可用于广泛的治疗应用。通过将纳米羟基磷灰石(nHA)颗粒与报道分子miRNA(nanomiRs)和胶原蛋白-纳米羟基磷灰石支架相结合,这项工作引入了迄今为止的第一个非病毒,非脂质平台,能够将成熟的miRNA分子有效地递送至人间充质干细胞(hMSCs) ),这是一种很难有效转染的细胞类型,与治疗相关的细胞毒性极低。首先,miRNA已成功地单层递送至hMSCs,nanomiR-mimics和nanoantagomiRs的内在化效率分别为17.4和39.6%,并且nanomiR-mimics和nanoantagomiRs在7天的单层中均产生了90%以上的持续干扰活性。当应用于3D支架时,在7天的时间内,nanomiR-mimics的RNA干扰显着达到20%,nanoantagomiRs的RNA干扰达到88.4%,而没有细胞毒性问题。总而言之,内部合成的非病毒nHA颗粒有效地在单层和支架上递送了报告子miRNA,证明了这种创新的miRNA激活支架系统在组织工程应用中的巨大潜力。 (C)2014 Elsevier B.V.保留所有权利。

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