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首页> 外文期刊>Colloids and Surfaces, B. Biointerfaces >Controlled release and antibacterial activity of antibiotic-loaded electrospun halloysite/poly(lactic-co-glycolic acid) composite nanofibers
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Controlled release and antibacterial activity of antibiotic-loaded electrospun halloysite/poly(lactic-co-glycolic acid) composite nanofibers

机译:负载静电纺丝埃洛石/聚乳酸-乙醇酸复合纳米纤维的控释和抑菌活性

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摘要

Fabrication of nanofiber-based drug delivery system with controlled release property is of general interest in biomedical sciences. In this study, we prepared an antibiotic drug tetracycline hydrochloride (TCH)-loaded halloysite nanotubes/poly(lactic-co-glycolic acid) composite nanofibers (TCH/HNTs/PLGA), and evaluated the drug release and antibacterial activity of this drug delivery system. The structure, morphology, and mechanical properties of the formed electrospun TCH/HNTs/PLGA composite nanofibrous mats were characterized using scanning electron microscopy (SEM), Fourier transform infrared spectroscopy, and tensile testing. We show that the incorporation of TCH-loaded HNTs within the PLGA nanofibers is able to improve the tensile strength and maintain the three-dimensional structure of the nanofibrous mats. In vitro viability assay and SEM morphology observation of mouse fibroblast cells cultured onto the fibrous scaffolds demonstrate that the developed TCH/HNTs/PLGA composite nanofibers are cytocompatible. More importantly, the TCH/HNTs/PLGA composite nanofibers are able to release the antibacterial drug TCH in a sustained manner for 42 days and display antimicrobial activity solely associated with the encapsulated TCH drug. With the improved mechanical durability, sustained drug release profile, good cytocompatibility, and non-compromised therapeutic efficacy, the developed composite electrospun nanofibrous drug delivery system may be used as therapeutic scaffold materials for tissue engineering and drug delivery applications.
机译:具有控释性质的基于纳米纤维的药物递送系统的制备在生物医学领域中是普遍关注的。在这项研究中,我们制备了负载抗生素药物盐酸四环素的埃洛石纳米管/聚乳酸-乙醇酸复合纳米纤维(TCH / HNTs / PLGA),并评估了该药物释放的药物释放和抗菌活性系统。使用扫描电子显微镜(SEM),傅立叶变换红外光谱和拉伸测试对形成的电纺TCH / HNTs / PLGA复合纳米纤维垫的结构,形态和力学性能进行了表征。我们表明,在PLGA纳米纤维内并入TCH负载的HNT能够提高拉伸强度并保持纳米纤维垫的三维结构。培养在纤维支架上的小鼠成纤维细胞的体外活力测定和SEM形态学观察表明,开发的TCH / HNTs / PLGA复合纳米纤维具有细胞相容性。更重要的是,TCH / HNTs / PLGA复合纳米纤维能够以持续方式释放抗菌药物TCH 42天,并显示仅与封装的TCH药物相关的抗菌活性。具有改善的机械耐久性,持续的药物释放特性,良好的细胞相容性和不妥协的治疗功效,开发的复合电纺纳米纤维药物递送系统可以用作组织工程和药物递送应用的治疗支架材料。

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