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Synthesis and antimicrobial applications of the inclusion complexes of beta-cyclodextrin copolymers with potassium sorbate

机译:β-环糊精共聚物包合物的合成和抗微生物应用与山梨酸钾

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Four inclusion complexes were synthesized from beta-cyclodextrin (beta-CD) copolymers and potassium sorbate (PSA) using the self-assembly principle. Reactive beta-CD monomers carrying unsaturated ester functional groups [beta-CD-acryloyl chloride (AC)] were synthesized from beta-CD and AC and copolymerized with styrene to obtain beta-CD copolymers of the general formula poly(beta-CD-AC-co-St). These beta-CD copolymers having cavity structures were complexed with PSA to obtain the corresponding inclusion complexes of the general formula poly(beta-CD-AC-co-St)/PSA. These complexes were added to the polystyrene (PS) sheets, as an antibacterial additive, to inhibit the adhesion and growth of bacteria on its surface. The chemical and physical structures of copolymers were characterized by Fourier transform infrared, nuclear magnetic resonance, and the slow release performance was investigated using ultraviolet spectroscopy. The results showed that the composition of the copolymers and their molecular weight could be controlled by changing the rate of charge while the rate and the amount of slow release could be controlled by altering the content of beta-CD in the copolymer. The PS sheets containing the inclusion complexes exhibited excellent antibacterial activity that significantly reduced the adhesion of yeast and Staphylococcus aureus to its surface. With the increase of the beta-CD content in the copolymers, they contained more of PSA and their bacteriostatic property became more pronounced. (c) 2018 Wiley Periodicals, Inc. J. Appl. Polym. Sci. 2018, 135, 46885.
机译:四个包合物从β-环糊精(β-CD)的共聚物和使用自组装原理山梨酸钾(PSA)来合成。携带不饱和酯的官能团的β--CD-丙烯酰氯(AC)]的反应性的β-CD的单体选自β-CD和AC合成并与苯乙烯,得到通式的聚(β-CD-AC的的β-CD共聚物共聚-成本)。具有腔结构这些β-CD共聚物PSA进行络合,得到通式的聚(β-CD-AC-CO-ST)/ PSA的相应包合络合物。这些复合物加入到聚苯乙烯(PS)片材,作为抗菌添加剂,以抑制在其表面上的细菌的附着和生长。通过傅立叶共聚物的化学和物理结构进行了表征变换红外,核磁共振,并且使用紫外分光光度法缓释性能进行了研究。的结果表明,共聚物和它们的分子量的组合物可以通过改变充电的速率,而速率和缓慢释放的量可以通过改变的β-CD的在共聚物中的含量来控制被控制。含有包合配合物的PS片材表现出优异的抗菌活性的酵母和金黄色葡萄球菌的粘附显著降低到其表面上。随着共聚物中的β-CD含量的增加,它们含有更多的PSA及其抑菌性能变得更加明显。 (c)2018 Wiley期刊,Inc.J.Phill。聚合物。 SCI。 2018年,135,46885。

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