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聚维酮碘壳聚糖纳米纤维经静脉阻塞给药头孢曲松治疗糖尿病足感染和烧伤创面。

Obstructed vein delivery of ceftriaxone via poly(vinyl-pyrrolidone)-iodine-chitosan nanofibers for the management of diabetic foot infections and burn wounds.

机构信息

College of Pharmaceutical Sciences, Zhejiang University of Technology, Hangzhou 310012, PR China.

Department of Pharmacy, COMSATS University Islamabad, Abbottabad Campus, Abbottabad, Pakistan.

出版信息

Int J Biol Macromol. 2024 Oct;277(Pt 2):134166. doi: 10.1016/j.ijbiomac.2024.134166. Epub 2024 Jul 30.

Abstract

Superficial skin injuries especially burn injuries and unhealed diabetic foot open wounds remain troubling for public health. The healing process is often interrupted by the invasion of resistant pathogens that results in the failure of conventional procedures outside the clinical settings. Herein, we designed nanofibers dressing with intrinsic antibacterial potential of poly(vinyl-pyrrolidone)-iodine/ poly (vinyl)-alcohol by electrospinning with chitosan encapsulating ceftriaxone (CPC/NFs). The optimized electrospun CPC/NFs exhibited smooth surface morphology with average diameter of 165 ± 7.1 nm, drug entrapment and loading efficiencies of 76.97 ± 4.7 % and 8.32 ± 1.73 %, respectively. The results displayed smooth and uniformed fibers with adequate thermal stability and ensured chemical doping. The enhanced in vitro antibacterial efficacy of CPC/NFs against resistant E. coli isolates and biosafety studies encourage the use of designed nanofibers dressing for burn injuries and diabetic foot injuries. In vivo studies proved the healing power of dressing for burn wounds model and diabetic infected wounds model. Immunofluorescence investigation of the wound tissue also suggested promising healing ability of CPC/NFs. The designed approach would be helpful to treat these infected skin open wounds in the hospitals and outside the clinical settings.

摘要

皮肤表面损伤,特别是烧伤和未愈合的糖尿病足开放性伤口,仍然困扰着公共卫生。在临床环境之外,由于耐药病原体的入侵,愈合过程经常被打断,导致常规治疗失败。在此,我们通过静电纺丝技术,设计了一种具有内在抗菌潜力的聚(乙烯基-吡咯烷酮)-碘/聚乙烯醇纳米纤维敷料,其中包载头孢曲松的壳聚糖(CPC/NFs)。优化后的电纺 CPC/NFs 具有光滑的表面形态,平均直径为 165 ± 7.1nm,药物包封率和载药量分别为 76.97 ± 4.7%和 8.32 ± 1.73%。结果显示,纤维光滑均匀,具有足够的热稳定性,并确保了化学掺杂。CPC/NFs 对耐药大肠杆菌分离株的体外增强抗菌效果和生物安全性研究,鼓励将设计的纳米纤维敷料用于烧伤和糖尿病足损伤。体内研究证明了敷料对烧伤创面模型和糖尿病感染创面模型的愈合作用。伤口组织的免疫荧光研究也表明 CPC/NFs 具有有前景的愈合能力。该设计方法将有助于治疗医院和临床环境之外的这些感染性皮肤开放性伤口。

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