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首页> 外文期刊>Scientific reports. >Fabrication of functional hollow microspheres constructed from MOF shells: Promising drug delivery systems with high loading capacity and targeted transport
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Fabrication of functional hollow microspheres constructed from MOF shells: Promising drug delivery systems with high loading capacity and targeted transport

机译:由MOF壳构造的功能性中空微球的制备:具有高负载能力和靶向运输的有前途的药物递送系统

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摘要

An advanced multifunctional, hollow metal-organic framework (MOF) drug delivery system with a high drug loading level and targeted delivery was designed and fabricated for the first time and applied to inhibit tumour cell growth. This hollow MOF targeting drug delivery system was prepared via a simple post-synthetic surface modification procedure, starting from hollow ZIF-8 successfully obtained for the first time via a mild phase transformation under solvothermal conditions. As a result, the hollow ZIF-8 exhibits a higher loading capacity for the model anticancer drug 5-fluorouracil (5-FU). Subsequently, 5-FU-loaded ZIF-8 was encapsulated into polymer layers (FA-CHI-5-FAM) with three components: a chitosan (CHI) backbone, the imaging agent 5-carboxyfluorescein (5-FAM), and the targeting reagent folic acid (FA). Thus, an advanced drug delivery system, ZIF-8/5-FU@FA-CHI-5-FAM, was fabricated. A cell imaging assay demonstrated that ZIF-8/5-FU@FA-CHI-5-FAM could target and be taken up by MGC-803 cells. Furthermore, the as-prepared ZIF-8/5-FU@FA-CHI-5-FAM exhibited stronger cell growth inhibitory effects on MGC-803 cells because of the release of 5-FU, as confirmed by a cell viability assay. In addition, a drug release experiment in vitro indicated that ZIF-8/5-FU@FA-CHI-5-FAM exhibited high loading capacity (51%) and a sustained drug release behaviour. Therefore, ZIF-8/5-FU@FA-CHI-5-FAM could provide targeted drug transportation, imaging tracking and localized sustained release.
机译:具有高药物负载水平和靶向递送的先进的多功能中空金属 - 有机框架(MOF)药物递送系统首次设计和制造,并施加抑制肿瘤细胞生长。该中空MOF靶向药物递送系统通过简单的合成后表面改性程序制备,从中空ZIF-8开始通过在溶剂热条件下通过轻度相转变成功获得。结果,空心ZIF-8对模型抗癌药物5-氟尿嘧啶(5-FU)表现出更高的负载能力。随后,用三种组分:壳聚糖(Chi)骨架,成像剂5-羧基荧光素(5-FAM)和靶向,将5-FU加载的ZIF-8包封成聚合物层(FA-CHI-5-FAM)。试剂叶酸(FA)。因此,制造了一种先进的药物递送系统,ZIF-8/5-FU-FA-CHI-5-FAM。细胞成像测定证明ZIF-8/5-FU-FA-5-FAM可以靶向并由MGC-803细胞吸收。此外,由于细胞活力测定证实,所制备的AS制备的ZIF-8/5-FU-FA-CHI-5-FAF-FA-CHI-5-FAM对MGC-803细胞的细胞生长抑制作用较强,如5-FU的释放。此外,在体外药物释放实验表明,ZIF-8/5-FU @ FA-CHI-5-FAM表现出高负载能力(51%)和持续的药物释放行为。因此,ZIF-8/5-FU @ FA-CHI-5-FAM可以提供有针对性的药物运输,成像跟踪和局部持续释放。

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