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首页> 外文期刊>Journal of Applied Polymer Science >Functionality of chitosan-halloysite nanocomposite films for sustained delivery of antibiotics: The effect of chitosan molar mass
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Functionality of chitosan-halloysite nanocomposite films for sustained delivery of antibiotics: The effect of chitosan molar mass

机译:壳聚糖 - 哈利亚钛矿纳米复合膜的持续递送抗生素的功能:壳聚糖摩尔质量的影响

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This study was designed to investigate functionality of tetracycline-loaded chitosan-halloysite nanocomposite films, with focus on evaluating the influence of chitosan molar mass on films applicability for sustained local antibiotic delivery. The films were prepared by casting and solvent evaporation using low, medium, and high molar mass chitosan. SEM analysis revealed compact, nonporous and rough surface of the nanocomposite films due to the presence of halloysite agglomerates and tetracycline crystals. Increasing chitosan molar mass led to higher values of elongation at break (from 21.65 +/- 2.65 to 34.48 +/- 2.34%), tensile strength (from 134.8 +/- 13.21 to 246.36 +/- 14.69 MPa), and elastic modulus (from 633.79 +/- 128.37 to 716.55 +/- 60.76 MPa) of the nanocomposite films. FT-IR, XRPD, and thermal analyses confirmed molar mass dependent chitosan-halloysite interactions and improved thermal stability of the nanocomposite films in comparison with chitosan films. The nanocomposite films released tetracycline in a sustained manner, with the slowest release achieved from the films consisting of low molar mass chitosan. Chitosan molar mass was confirmed to be a functionality-related characteristic of chitosan-halloysite nanocomposite films as potential sustained-release carriers for topical delivery of antibiotics. (c) 2019 Wiley Periodicals, Inc. J. Appl. Polym. Sci. 2019, 136, 48406.
机译:本研究旨在研究四环素负载的壳聚糖博物核苷酸纳米复合膜的功能,重点是评估壳聚糖摩尔质量对薄膜适用性的影响,用于持续局部抗生素递送。通过使用低,培养基和高摩尔质量壳聚糖浇铸和溶剂蒸发来制备薄膜。 SEM分析由于存在霍氏铁聚物和四环素晶体,揭示了纳米复合膜的紧凑,无孔和粗糙表面。增加壳聚糖摩尔质量导致突破的伸长率高(从21.65 +/- 2.65至34.48 +/- 2.34%),拉伸强度(从134.8 +/- 13.21至246.36 +/- 14.69MPa)和弹性模量(从633.79 +/- 128.37至716.55 +/- 60.76MPa的纳米复合膜。 FT-IR,XRPD和热分析证实了耐磨摩尔质量依赖性壳聚糖 - Holloysite相互作用,以及与壳聚糖薄膜相比的纳米复合膜的热稳定性。纳米复合膜以持续的方式释放四环素,从由低摩尔质量壳聚糖组成的薄膜实现的最慢释放。壳聚糖摩尔质量被证实是壳聚糖 - 霍金纳米复合膜的官能相关特性,作为用于局部递送抗生素的潜在缓释的载体。 (c)2019 Wiley期刊,Inc.J.Phill。聚合物。 SCI。 2019,136,48406。

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