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用于热触发释放噬菌体K的聚(N-异丙基丙烯酰胺-共-烯丙胺)(PNIPAM-co-ALA)纳米球

Poly(N-isopropylacrylamide-co-allylamine) (PNIPAM-co-ALA) nanospheres for the thermally triggered release of Bacteriophage K.

作者信息

Hathaway Hollie, Alves Diana R, Bean Jessica, Esteban Patricia P, Ouadi Khadija, Sutton J Mark, Jenkins A Toby A

机构信息

Department of Chemistry, University of Bath, BA2 7AY, UK.

Department of Chemical Engineering, University of Bath, BA2 7AY, UK.

出版信息

Eur J Pharm Biopharm. 2015 Oct;96:437-41. doi: 10.1016/j.ejpb.2015.09.013. Epub 2015 Sep 28.

Abstract

Due to the increased prevalence of resistant bacterial isolates which are no longer susceptible to antibiotic treatment, recent emphasis has been placed on finding alternative modes of treatment of wound infections. Bacteriophage have long been investigated for their antimicrobial properties, yet the utilization of phage therapy for the treatment of wound infections relies on a suitable delivery system. Poly(N-isopropylacrylamide) (PNIPAM) is a thermally responsive polymer which undergoes a temperature dependent phase transition at a critical solution temperature. Bacteriophage K has been successfully formulated with PNIPAM nanospheres copolymerized with allylamine (PNIPAM-co-ALA). By utilizing a temperature responsive polymer it has been possible to engineer the nanospheres to collapse at an elevated temperature associated with a bacterial skin infection. The nanogels were reacted with surface deposited maleic anhydride in order to anchor the nanogels to non-woven fabric. Bacteriophage incorporated PNIPAM-co-ALA nanospheres demonstrated successful bacterial lysis of a clinically relevant bacterial isolate - Staphylococcus aureus ST228 at 37°C, whilst bacterial growth was unaffected at 25°C, thus providing a thermally triggered release of bacteriophage.

摘要

由于耐药细菌分离株的患病率增加,这些分离株不再对抗生素治疗敏感,最近人们将重点放在寻找伤口感染的替代治疗方式上。长期以来,人们一直在研究噬菌体的抗菌特性,然而噬菌体疗法在伤口感染治疗中的应用依赖于合适的递送系统。聚(N-异丙基丙烯酰胺)(PNIPAM)是一种热响应性聚合物,在临界溶液温度下会发生温度依赖性相变。噬菌体K已成功与与烯丙胺共聚的PNIPAM纳米球(PNIPAM-co-ALA)配制在一起。通过利用温度响应性聚合物,已能够设计纳米球,使其在与细菌性皮肤感染相关的升高温度下塌陷。纳米凝胶与表面沉积的马来酸酐反应,以便将纳米凝胶锚定到无纺布上。掺入噬菌体的PNIPAM-co-ALA纳米球在37°C时对临床相关细菌分离株金黄色葡萄球菌ST228表现出成功的细菌裂解作用,而在25°C时细菌生长未受影响,从而实现了噬菌体的热触发释放。

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