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A multifunctional upconverting nanoparticle incorporated polycationic hydrogel for near-infrared triggered and synergistic treatment of drug-resistant bacteria

机译:包含聚阳离子水凝胶的多功能上转换纳米粒子,用于近红外触发和协同治疗耐药菌

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Recently, antibiotic drug-resistant therapies have become very important due to the emergence of antibiotic-resistant bacterial strains. The development of novel antibacterial materials has received significant attention. Here, quaternized chitosan hydrogels incorporated with NaYF4:Er/Yb/Mn@photosensitizer-doped silica (UCNPs/MB) were synthesized for effective killing of both gram-positive oxacillin-resistant S. aureus (DR-S. aureus) and gram-negative kanamyclin-resistant E. coli (DR-E. coli) bacteria upon near-infrared (NIR) laser irradiation. In this system, the cationic macroporous nature of the hydrogel acts as a molecular 'anion sponge', which sucks the outer part of the anionic microbe membrane into the gel interior voids and causes microbe membrane disruption. By incorporating UCNPs/MB-doped silica into the hydrogel, we have combined photodynamic therapy (PDT) with quaternized chitosan to obtain a high therapeutic index via a synergistic effect. In vitro experiments have demonstrated that our system had excellent antibacterial efficiency to both DR-S. aureus and DR-E. coli bacteria. More importantly, our new synergistic treatment modality provided an excellent therapy platform for drug-resistant bacteria, which could improve antimicrobial efficiency.
机译:近来,由于抗生素抗性细菌菌株的出现,抗生素抗药性治疗变得非常重要。新型抗菌材料的开发受到了广泛的关注。在此,合成了掺有NaYF4:Er / Yb / Mn @光敏剂掺杂的二氧化硅(UCNPs / MB)的季铵化壳聚糖水凝胶,以有效杀死革兰氏阳性耐奥沙林的金黄色葡萄球菌(DR-S。aureus)和革兰氏阳性菌。负卡那霉素耐药大肠杆菌(DR-E。coli)在近红外(NIR)激光照射下产生。在该系统中,水凝胶的阳离子大孔性质充当分子“阴离子海绵”,将阴离子微生物膜的外部吸入凝胶内部空隙并引起微生物膜破裂。通过将UCNPs / MB掺杂的二氧化硅掺入水凝胶中,我们将光动力疗法(PDT)与季铵化的壳聚糖结合使用,以通过协同作用获得高治疗指数。体外实验表明,我们的系统对两种DR-S均具有出色的抗菌效率。金黄色和DR-E。大肠杆菌。更重要的是,我们新的协同治疗方式为耐药菌提供了一个极好的治疗平台,可提高抗菌效果。

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