El Ghoul Y, Blanchemain N, Laurent T, Campagne C, El Achari A, Roudesli S, Morcellet M, Martel B, Hildebrand H F
Laboratoire de Chimie Organique et Macromoléculaire, CNRS-UMR 8009, USTL, F-59655 Villeneuve d'Ascq, France.
Acta Biomater. 2008 Sep;4(5):1392-400. doi: 10.1016/j.actbio.2008.02.019. Epub 2008 Mar 18.
This study describes the use of cyclodextrins (CDs) as a finishing agent of polyamide (PA) fibers used in order to obtain inguinal meshes with improved antibiotic delivery properties. The finishing process involved polymerization between citric acid and CDs, which yielded a cross-linked polymer that physically adhered to the surface of PA fibers. This permanent functionalization was characterized by evaluating the damping property with a polar liquid (glycerol) via the drop contact angle method for various rates of modification of the fabrics. The biological and microbiological effects of the PA, which were functionalized with hydroxypropylated derivate of gamma-CD (HP-gamma-CDs) and charged with ciprofloxacin (CFX), were evaluated by cell culture assays. We observed a good adhesion and proliferation of fibroblastic cells (NIH3T3) after 3 and 6 days and no detectable toxicity of the modified substrate. The in vitro antibacterial activity of the HP-gamma-CD grafted PA fabrics charged with CFX against the bacteria Staphylococcus aureus, Staphylococcus epidermidis and Escherichia coli was greatly superior to that of the virgin sample within a 24h batch experiment in human blood plasma medium. In conclusion, these results from our study offer an insight into the efficient performance of CDs as drug delivery systems for multiple applications in the fields of biomaterials and medical textiles.
本研究描述了使用环糊精(CDs)作为聚酰胺(PA)纤维的整理剂,以获得具有改善抗生素递送性能的腹股沟补片。整理过程涉及柠檬酸与CDs之间的聚合反应,生成一种物理附着在PA纤维表面的交联聚合物。通过采用滴接触角法,使用极性液体(甘油)评估织物在不同改性率下的阻尼性能,对这种永久性功能化进行了表征。通过细胞培养试验评估了用γ-环糊精羟丙基衍生物(HP-γ-CDs)功能化并负载环丙沙星(CFX)的PA的生物学和微生物学效应。我们观察到成纤维细胞(NIH3T3)在3天和6天后具有良好的黏附性和增殖能力,且改性基质无明显毒性。在人血浆培养基中进行的24小时批次实验中,负载CFX的HP-γ-CD接枝PA织物对金黄色葡萄球菌、表皮葡萄球菌和大肠杆菌的体外抗菌活性大大优于未处理样品。总之,我们研究的这些结果为CDs作为生物材料和医用纺织品领域多种应用的药物递送系统的高效性能提供了见解。