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含有磺胺嘧啶修饰壳聚糖的杂化纳米结构作为抗菌药物载体

Hybrid Nanostructures Containing Sulfadiazine Modified Chitosan as Antimicrobial Drug Carriers.

作者信息

Munteanu Bogdanel Silvestru, Dumitriu Raluca Petronela, Profire Lenuta, Sacarescu Liviu, Hitruc Gabriela Elena, Stoleru Elena, Dobromir Marius, Matricala Ana Lavinia, Vasile Cornelia

机构信息

Department of Physics, Faculty of Physics, "Al. I. Cuza" University of Iasi, 11 Carol I bvd, 700506 Iasi, Romania.

Department of Physical Chemistry of Polymers, "P. Poni" Institute of Macromolecular Chemistry, Romanian Academy, 41A Grigore GhicaVoda Alley, 700487 Iasi, Romania.

出版信息

Nanomaterials (Basel). 2016 Nov 10;6(11):207. doi: 10.3390/nano6110207.

Abstract

Chitosan (CH) nanofibrous structures containing sulfadiazine (SDZ) or sulfadiazine modified chitosan (SCH) in the form of functional nanoparticles attached to nanofibers (hybrid nanostructures) were obtained by mono-axial and coaxial electrospinning. The mono-axial design consisted of a SDZ/CH mixture solution fed through a single nozzle while the coaxial design consisted of SCH and CH solutions separately supplied to the inner and outer nozzle (or in reverse order). The CH ability to form nanofibers assured the formation of a nanofiber mesh, while SDZ and SCH, both in form of suspensions in the electrospun solution, assured the formation of active nanoparticles which remained attached to the CH nanofiber mesh after the electrospinning process. The obtained nanostructures were morphologically characterized by scanning electron microscopy (SEM) and atomic force microscopy (AFM). The SDZ release profiles and kinetics were analyzed. The SDZ or SCH nanoparticles loosely attached at the surface of the nanofibers, provide a burst release in the first 20 min, which is important to stop the possible initial infection in a wound, while the SDZ and SCH from the nanoparticles which are better confined (or even encapsulated) into the CH nanofibers would be slowly released with the erosion/disruption of the CH nanofiber mesh.

摘要

通过单轴和同轴静电纺丝制备了含有磺胺嘧啶(SDZ)或磺胺嘧啶修饰壳聚糖(SCH)的壳聚糖(CH)纳米纤维结构,其形式为附着在纳米纤维上的功能性纳米颗粒(混合纳米结构)。单轴设计由通过单个喷嘴进料的SDZ/CH混合溶液组成,而同轴设计由分别供应到内喷嘴和外喷嘴的SCH和CH溶液组成(或顺序相反)。CH形成纳米纤维的能力确保了纳米纤维网的形成,而SDZ和SCH均以静电纺丝溶液中的悬浮液形式存在,确保了活性纳米颗粒的形成,这些纳米颗粒在静电纺丝过程后仍附着在CH纳米纤维网上。通过扫描电子显微镜(SEM)和原子力显微镜(AFM)对所得纳米结构进行了形态表征。分析了SDZ的释放曲线和动力学。松散附着在纳米纤维表面的SDZ或SCH纳米颗粒在最初20分钟内提供突发释放,这对于阻止伤口可能的初始感染很重要,而更好地限制(甚至封装)在CH纳米纤维中的纳米颗粒中的SDZ和SCH将随着CH纳米纤维网的侵蚀/破坏而缓慢释放。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5cf0/5245742/29f95adcacf7/nanomaterials-06-00207-sch001.jpg

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