Department of Chemistry and Biochemistry, Auburn University, Auburn, AL 36849, USA.
Center for Polymers and Advanced Composites, Department of Mechanical Engineering, Auburn University, Auburn, AL 36849, USA.
Molecules. 2017 Sep 21;22(10):1582. doi: 10.3390/molecules22101582.
This work demonstrated the successful application of N-halamine technology for wound dressings rendered antimicrobial by facile and inexpensive processes. Four N-halamine compounds, which possess different functional groups and chemistry, were synthesized. The N-halamine compounds, which contained oxidative chlorine, the source of antimicrobial activity, were impregnated into or coated onto standard non-antimicrobial wound dressings. N-halamine-employed wound dressings inactivated about 6 to 7 logs of and bacteria in brief periods of contact time. Moreover, the N-halamine-modified wound dressings showed superior antimicrobial efficacies when compared to commercially available silver wound dressings. Zone of inhibition tests revealed that there was no significant leaching of the oxidative chlorine from the materials, and inactivation of bacteria occurred by direct contact. Shelf life stability tests showed that the dressings were stable to loss of oxidative chlorine when they were stored for 6 months in dark environmental conditions. They also remained stable under florescent lighting for up to 2 months of storage. They could be stored in opaque packaging to improve their shelf life stabilities. In vitro skin irritation testing was performed using a three-dimensional human reconstructed tissue model (EpiDerm™). No potential skin irritation was observed. In vitro cytocompatibility was also evaluated. These results indicate that N-halamine wound dressings potentially can be employed to prevent infections, while at the same time improving the healing process by eliminating undesired bacterial growth.
这项工作展示了通过简便且经济的方法,将 N-卤胺技术成功应用于抗菌伤口敷料。合成了 4 种具有不同官能团和化学性质的 N-卤胺化合物。将含有抗菌活性来源氧化氯的 N-卤胺化合物浸渍或涂覆到标准的非抗菌伤口敷料上。N-卤胺伤口敷料可在短时间接触内使 和 细菌减少约 6 至 7 个对数级。此外,与市售的含银伤口敷料相比,改性的 N-卤胺伤口敷料具有更好的抗菌效果。抑菌环试验表明,材料中没有显著的氧化氯浸出,细菌的失活是通过直接接触实现的。货架期稳定性试验表明,在黑暗环境条件下储存 6 个月,敷料的氧化氯损失稳定;在荧光灯下储存长达 2 个月也保持稳定。用不透明包装储存可以提高其货架期稳定性。采用三维人重建组织模型(EpiDerm™)进行了体外皮肤刺激性试验。未观察到潜在的皮肤刺激性。还评估了体外细胞相容性。这些结果表明,N-卤胺伤口敷料可用于预防感染,同时通过消除不需要的细菌生长来改善愈合过程。