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Eradication of Bacteria in Suspension and Biofilms Using Methylene Blue-Loaded Dynamic Nanoplatforms▿

机译:使用亚甲基蓝负载的动态纳米平台消除悬浮液和生物膜中的细菌

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摘要

The bacterial killing efficiency of a dynamic nanoplatform (DNP) was evaluated. The polyacrylamide (PAA) hydrogel matrix of the DNP was loaded with methylene blue (MB) and was previously applied successfully to killing rat C6 glioma tumor cells in culture. This series of experiments is aimed at determining the suitability of this nanoplatform for elimination of bacterial infections. Suspended cultures of Staphylococcus aureus, Pseudomonas aeruginosa, Escherichia coli, and Acinetobacter sp. were exposed to activated (∼650-nm laser light) MB-PAA-DNPs. The killing efficiency of nanoparticle mass concentration, light irradiance and fluence, and dark incubation time was determined on each of the bacterial species. Moreover, the ability of activated MB-PAA-DNPs to inhibit biofilm growth and eradicate and disperse preformed biofilms, preformed on glass and polystyrene surfaces, was demonstrated. The data revealed that activated MB-PAA-DNPs eradicated all species of bacteria examined. Also, encapsulation of MB into the PAA-DNP matrix significantly diminished the observed dark toxicity of free dye. The photobactericidal efficacy of MB-PAA-DNP was found to be higher for gram-positive bacteria than for gram-negative bacteria. In addition, activated MB-PAA-DNP can inhibit biofilm growth and eradicate almost all of the early-age biofilms that are formed by all of the bacteria examined.
机译:评价了动态纳米平台(DNP)的细菌杀灭效率。 DNP的聚丙烯酰胺(PAA)水凝胶基质装有亚甲基蓝(MB),先前已成功应用于杀死培养中的大鼠C6胶质瘤肿瘤细胞。该系列实验旨在确定该纳米平台对消除细菌感染的适用性。悬浮培养的金黄色葡萄球菌,铜绿假单胞菌,大肠杆菌和不动杆菌属。将其暴露于活化的(〜650 nm激光)MB-PAA-DNP中。确定每种细菌物种的纳米颗粒质量浓度,光辐照度和能量密度以及黑暗孵育时间的杀灭效率。而且,证明了活化的MB-PAA-DNP抑制生物膜生长以及根除和分散在玻璃和聚苯乙烯表面上形成的生物膜的能力。数据显示,活化的MB-PAA-DNP消除了所检查细菌的所有种类。同样,将MB封装到PAA-DNP基质中可显着减少所观察到的游离染料的暗毒性。发现MB-PAA-DNP对革兰氏阳性细菌的光杀菌效力高于对革兰氏阴性细菌的光杀菌效力。此外,活化的MB-PAA-DNP可以抑制生物膜的生长,并根除几乎所有由所有细菌组成的早期生物膜。

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