Sumy State University, Laboratory 'Bionanocomposite', Sumy 40007, Ukraine.
Sumy State University, Laboratory 'Bionanocomposite', Sumy 40007, Ukraine.
Carbohydr Polym. 2021 Aug 15;266:118137. doi: 10.1016/j.carbpol.2021.118137. Epub 2021 May 6.
Composite based on nano-sized hydroxyapatite (HA), zinc oxide (ZnO), chitosan (CS), alginate (Alg) with the function of sustained Ceftriaxone (CF) release was created as molecular sorption-aspiration drainage system (SADS), designed for the treatment of purulent cavities of various genesis, including peritonitis. ZnO stabilizes the composite structurally, reducing the swelling by 1.5 and porosity by 1.4 times. The absorption of tryptophan (Trp) by SADS for 72 h from aqueous solution is 80%, while from PBS - 50%. The content of ZnO (15,20%) slows the CF release by 1.6 times on the first day of SADS installation and reduces the likelihood of "burst" drug release. CF release exponent of ZnO-containing composites indicates the non-Fickian diffusion kinetics. 20%ZnO-containing composite is closest to zero-order kinetics. The reduction of the concentration of E. coli microbial cells for 43% in the presence of HA-nZnO-Alg/CS -based CADS and positive therapeutic pathomorphosis were observed in vivo.
基于纳米羟基磷灰石 (HA)、氧化锌 (ZnO)、壳聚糖 (CS)、海藻酸钠 (Alg) 的复合材料具有持续释放头孢曲松 (CF) 的功能,被设计为治疗各种病因的脓性腔,包括腹膜炎。ZnO 稳定了复合材料的结构,使复合材料的溶胀度降低了 1.5 倍,孔隙度降低了 1.4 倍。SADS 在 72 小时内从水溶液中吸收色氨酸 (Trp) 的吸收率为 80%,而从 PBS 中吸收的吸收率为 50%。第 1 天安装 SADS 时,含有 15%、20% ZnO 的复合材料使 CF 的释放速度减缓了 1.6 倍,降低了“爆发”式药物释放的可能性。含 ZnO 复合材料的 CF 释放指数表明其扩散动力学符合非菲克定律。20% ZnO 含量的复合材料最接近零级动力学。在体内观察到,基于 HA-nZnO-Alg/CS 的 CADS 存在时,大肠杆菌微生物细胞的浓度降低了 43%,并呈现出积极的治疗病理形态。