首页> 外文期刊>Biomedical materials >Chitosan/montmorillonite composite nanospheres for sustained antibiotic delivery at post-implantation bone infection treatment
【24h】

Chitosan/montmorillonite composite nanospheres for sustained antibiotic delivery at post-implantation bone infection treatment

机译:壳聚糖/蒙脱石型复合纳米球用于植入后骨感染治疗的持续抗生素递送

获取原文
获取原文并翻译 | 示例
           

摘要

Despite the advancements in bone transplantation operations, inflammation is still a serious problem that threatens human health at the post-implantation period. Conventional antibiotic therapy methods may lead to some side effects such as ototoxicity and nephrotoxicity, especially when applied in high doses. Therefore, local drug delivery systems play a vital role in bone disorders due to the elimination of the disadvantages introduced by conventional methods. In the presented study, it was aimed to develop Vancomycin (VC) and Gentamicin (GC) loaded chitosan-montmorillonite nanoclay composites (CS/MMT) to provide required antibiotic doses to combat post-implantation infection. CS/MMTnanocomposite formation was supplied by microfluidizer homogenization and spherical drug carrier nanoparticles were obtained by electrospraying technique. Three factors; voltage, distance and flowrate were varied to fabricate spherical nanoparticles with uniform size. Emprical model was developed to predict nanosphere size by altering process variables. Nanospheres were characterized in terms of morphology, hydrodynamic size, zeta potential, drug encapsulation efficiency and release profile. Drug loaded nanospheres have been successfully produced with a size range of 180-350 nm. Nanocomposite drug carriers showed high encapsulation efficiency (80%-95%) and prolonged release period when compared to bare chitosan nanospheres. The drug release from nanocomposite carriers was monitored by diffusion mechanism up to 30 d. The in vitro release medium of nanospheres showed strong antimicrobial activity against gram-positive S. aureus and gram-negative E. coli bacteria. Furthermore, it was found that the nanospheres did not show any cytotoxic effect to fibroblast (NIH/3T3) and osteoblast (SaOS-2) cell lines. The results demonstrated that the prepared composite nanospheres can be a promising option for bone infection prevention at the post implantation period.
机译:尽管骨移植作用进展,炎症仍然是植入后期威胁人类健康的严重问题。常规的抗生素治疗方法可能导致一些副作用,例如耳毒性和肾毒性,特别是当以高剂量施用时。因此,由于常规方法引入的缺点,局部药物递送系统在骨紊乱中发挥着至关重要的作用。在本研究中,它旨在开发万古霉素(VC)和庆大霉素(GC)的壳聚糖 - 蒙脱石纳米粘土复合材料(CS / MMT),以提供所需的抗生素剂量来打击植入后感染。通过微流体均质化提供CS / MMTNANOC复合材料,通过电子喷雾技术获得球形药物载体纳米颗粒。三个因素;改变电压,距离和流量以制造具有均匀尺寸的球形纳米颗粒。通过改变过程变量来开发Emprical模型以预测纳米尺寸。纳米球的特征在于形态,流体动力学大小,Zeta电位,药物包封效率和释放曲线。已经成功生产了药物负载纳米球,尺寸范围为180-350nm。与裸壳聚糖纳米球相比,纳米复合药物载体显示出高封装效率(80%-95%)和延长的释放期。通过扩散机制监测来自纳米复合载体的药物释放,高达30d。纳米球体的体外释放培养基表现出针对革兰氏阳性金黄色葡萄球菌和革兰氏阴性大肠杆菌细菌的强抗微生物活性。此外,发现纳米球未对成纤维细胞(NIH / 3T3)和成骨细胞(SAOS-2)细胞系显示任何细胞毒性作用。结果表明,制备的复合材料纳米球可以是植入后期骨感染预防的有前途的选择。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号