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Self-targeting, zwitterionic micellar dispersants enhance antibiotic killing of infectious biofilms—An intravital imaging study in mice

机译:自定位,两性离子胶束分散剂增强了抗生素杀伤传染性生物膜 - 小鼠中的椎间体成像研究

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Extracellular polymeric substances (EPS) hold infectious biofilms together and limit antimicrobial penetration and clinical infection control. Here, we present zwitterionic micelles as a previously unexplored, synthetic self-targeting dispersant. First, a pH-responsive poly(ε-caprolactone)- block -poly(quaternary-amino-ester) was synthesized and self-assembled with poly(ethylene glycol)- block -poly(ε-caprolactone) to form zwitterionic, mixed-shell polymeric micelles (ZW-MSPMs). In the acidic environment of staphylococcal biofilms, ZW-MSPMs became positively charged because of conversion of the zwitterionic poly(quaternary-amino-ester) to a cationic lactone ring. This allowed ZW-MSPMs to self-target, penetrate, and accumulate in staphylococcal biofilms in vitro. In vivo biofilm targeting by ZW-MSPMs was confirmed for staphylococcal biofilms grown underneath an implanted abdominal imaging window through direct imaging in living mice. ZW-MSPMs interacted strongly with important EPS components such as eDNA and protein to disperse biofilm and enhance ciprofloxacin efficacy toward remaining biofilm, both in vitro and in vivo. Zwitterionic micellar dispersants may aid infection control and enhance efficacy of existing antibiotics against remaining biofilm.
机译:细胞外聚合物物质(EPS)持有传染性生物膜,并限制抗微生物渗透和临床感染控制。这里,我们将两性离子胶束呈现为先前未探索的合成自定位分散剂。首先,合成pH-响应聚(ε-己内酯) - 嵌段-poly(季氨基 - 酯),用聚(乙二醇) - 嵌段-poly(ε-己内酯)进行自组装,形成两性离子,混合 - 壳聚合物胶束(ZW-MSPM)。在葡萄球菌生物膜的酸性环境中,由于两性离子聚(氨基 - 氨基酯)转化为阳离子内酯环,ZW-MSPMS变得正电荷。这使得Zw-MSPM允许在体外渗透到自靶,穿透和积聚在葡萄球菌生物膜中。在体内生物膜通过ZW-MSPMS的靶向,通过直接成像在植入的腹部成像窗口下生长的葡萄球菌生物膜来证实。 ZW-MSPMS强烈地与eDNA和蛋白质等重要的EPS组分强烈相互作用,以分散生物膜,并增强在体外和体内剩余生物膜的环丙沙星疗效。两倍离子胶束分散剂可以帮助感染控制和提高现有抗生素对剩余生物膜的疗效。

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