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首页> 外文期刊>Macromolecular Research >Fabrication of Superabsorbent Ultrathin Nanofibers Using Mesoporous Materials for Antimicrobial Drug-Delivery Applications
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Fabrication of Superabsorbent Ultrathin Nanofibers Using Mesoporous Materials for Antimicrobial Drug-Delivery Applications

机译:使用介孔材料制备超吸收性超薄纳米纤维,用于抗菌药物递送应用

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摘要

The goal of this study was to prepare functionalized, ultrathin nanofibers using mesoporous materials (TS-1 zeolite) with maximum capability to both absorb drug and control drug release (these fibers are herein referred to as PZ-01); a second goal was to prepare nanofibers that exhibit biodegradability after drug release. Under optimal conditions, the characteristic of TS-1 zeolite enabled the preparation of ultrathin nanofibers with diameters below 100 nm, or one-twentieth the size of homo-poly(butylene succinate) (PBS) fibers. In addition, PZ-01 nanofibers exhibited high drug loading capacity compared to homo-PBS fibers. This result was attributable to the large surface area of ultrathin nanofibers and to the strong ionic interaction between hydrophilic drugs and the metal ions of TS-1 zeolite. In vitro cytostatic assay indicated that prepared PZ-01 has cytostatic action toward both Gram-positive and Gram-negative bacteria. The excellent drug wetting behavior of PZ-01 led to longer drug-release times. After drug-release tests, antibacterial tests confirmed that homo-PBS fibers had diminished antibiotic activity regardless of the type of bacteria, whereas the antibacterial activity of tested PZ-01 was highly efficient against both Gram-positive and Gram-negative bacteria. In the cell viability test, PZ-01 exhibited a greater decrease in cytotoxicity and an increase in cell viability compared with the homo-PBS nanofiber. Based on this research, we anticipate that these materials will be promising candidates for biomedical applications such as biofilters for microbes, wound dressings, and drug-delivery products.
机译:这项研究的目标是使用介孔材料(TS-1沸石)制备功能化的超薄纳米纤维,该纤维具有最大的吸收药物和控制药物释放的能力(这些纤维在本文中称为PZ-01)。第二个目标是制备药物释放后具有生物降解性的纳米纤维。在最佳条件下,TS-1沸石的特性使得能够制备直径低于100 nm或均聚聚丁二酸丁二酯(PBS)纤维尺寸二十分之一的超薄纳米纤维。另外,与同型PBS纤维相比,PZ-01纳米纤维具有较高的载药量。该结果归因于超薄纳米纤维的大表面积,并且归因于亲水性药物与TS-1沸石的金属离子之间的强离子相互作用。体外细胞抑制试验表明,制备的PZ-01对革兰氏阳性和革兰氏阴性细菌均具有细胞抑制作用。 PZ-01优异的药物润湿性能导致更长的药物释放时间。经过药物释放测试,抗菌测试证实,不论细菌的类型如何,均一PBS纤维的抗生素活性均下降,而被测PZ-01的抗菌活性对革兰氏阳性和革兰氏阴性细菌均非常有效。在细胞生存力测试中,与同型PBS纳米纤维相比,PZ-01表现出更大的细胞毒性降低和细胞生存力增加。根据这项研究,我们预计这些材料将成为生物医学应用的有前途的候选者,例如用于微生物,伤口敷料和药物输送产品的生物过滤器。

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