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用于抗菌应用的、包含三氯生/环糊精复合物的生物基聚氨酯纳米纤维的制备

Fabrication of bio-based polyurethane nanofibers incorporated with a triclosan/cyclodextrin complex for antibacterial applications.

作者信息

Lee Joo Hyung, Park Sang Ho, Kim Seong Hun

机构信息

Department of Organic and Nano Engineering, College of Engineering, Hanyang University Seoul Korea

LG Hausys R&D Center Seoul Korea.

出版信息

RSC Adv. 2020 Jan 21;10(6):3450-3458. doi: 10.1039/c9ra06992e. eCollection 2020 Jan 16.

Abstract

A hybrid polyol consisting of a polycaprolactone diol/castor oil mixture was used to synthesize a biopolyurethane (BPU) that has a dendritic point but is soluble in organic solvents. The chemical structure of the obtained BPU was determined using Fourier transform infrared (FT-IR) spectroscopy and proton nuclear magnetic resonance spectroscopy. The mechanical properties of the electrospun BPU nanofiber were confirmed using a universal testing machine. To enhance the solubility of triclosan (TR), TR-cyclodextrin (CD) complexes were prepared. αCD, βCD, and γCD were used to study the formation of the TR-CD complexes using a coprecipitation technique. The results showed that TR did not form a complex with αCD, whereas it forms complexes partially with βCD and completely with γCD. These findings are supported by FT-IR, differential scanning calorimetry, and X-ray diffraction analyses. The electrospun BPU/TR-CD nanofibers were investigated in terms of morphology, releasing behavior, and antibacterial tests. The BPU/TR-γCD nanofiber shows better antibacterial activity than the others. The results obtained in this study are expected to broaden the range of biobased polyurethane applications where antibacterial properties are required.

摘要

一种由聚己内酯二醇/蓖麻油混合物组成的杂化多元醇被用于合成一种具有树枝状节点但可溶于有机溶剂的生物聚氨酯(BPU)。使用傅里叶变换红外(FT-IR)光谱和质子核磁共振光谱确定所得BPU的化学结构。使用万能试验机确认了电纺BPU纳米纤维的机械性能。为提高三氯生(TR)的溶解度,制备了TR-环糊精(CD)复合物。使用共沉淀技术,用α-CD、β-CD和γ-CD研究TR-CD复合物的形成。结果表明,TR不与α-CD形成复合物,而与β-CD部分形成复合物,与γ-CD完全形成复合物。这些发现得到了FT-IR、差示扫描量热法和X射线衍射分析的支持。对电纺BPU/TR-CD纳米纤维进行了形态、释放行为和抗菌测试方面的研究。BPU/TR-γ-CD纳米纤维表现出比其他纤维更好的抗菌活性。预计本研究获得的结果将拓宽需要抗菌性能的生物基聚氨酯应用范围。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c208/9048417/0971cc9371df/c9ra06992e-f9.jpg

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