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Preparation of photodynamic P(MMA-co-MAA) composite nanofibers doped with MMT: A facile method for increasing antimicrobial efficiency

机译:MMT掺杂的光动力P(MMA-co-MAA)复合纳米纤维的制备:提高抗菌效率的简便方法

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We report the preparation of photodynamic materials from electrospun nanofibers of P(MMA-co-MAA) copolymer that were doped with montmorillonite (MMT), and further functionalized with the cationic photosensitizer methylene blue (MB). The resultant composite nanofibers were characterized by spectroscopic (infrared, UV - vis, fluorescence) and physical (SEM/TEM, gravimetric) methods. Addition of MMT (0-6 wt%) in the electrospinning process increased the adsorption of the methylene blue photosensitizer from 21.5 mg (67.1 mu mol)/g P(MMA-co-MAA) parent co-polymer to 30.0 mg (93.8 mu mol)/g P(MMA-co-MAA)/MMT-6 composite nanofibers. The MB-decorated P(MMA-co-MAA)/MMT-6 composite nanofibers showed a 99.997% (4.8 log units) and 97% (1.8 log units) reduction in CFU/mL against Staphylococcus aureus (ATCC-6538) and Escherichia coll. strain 8099, respectively, after visible light illumination (LED lamp, 30 min, 35 +/- 5 mW/cm(2)), demonstrating that the increased photosensitizer loading attributable to MMT doping led to a 1-2 log unit increase in photodynamic inactivation efficacy over the non-doped MB-decorated P(MMA-co-MAA) parent copolymer (99.9% and 84% reduction for S. aureus and E. coli, respectively). The results demonstrate that MMT and similar additives may be a universal method for increasing the adsorption capacity of cationic photosensitizers in electrospun nanofibers, thereby generating materials with improved photodynamic inactivation efficacy without significantly changing the fiber morphology, cost, or ease of production.
机译:我们报告了从电纺纳米纤维的P(MMA-co-MAA)共聚物的光纺材料的制备,这些纤维掺有蒙脱石(MMT),并进一步用阳离子光敏剂亚甲基蓝(MB)进行了功能化。所得的复合纳米纤维通过分光镜(红外,紫外-可见,荧光)和物理(SEM / TEM,重量分析)方法进行表征。在静电纺丝过程中添加MMT(0-6 wt%)将亚甲基蓝光敏剂的吸附量从21.5 mg(67.1 mu mol)/ g P(MMA-co-MAA)母体共聚物吸附到30.0 mg(93.8 mu)摩尔/克P(MMA-co-MAA)/ MMT-6复合纳米纤维。用MB装饰的P(MMA-co-MAA)/ MMT-6复合纳米纤维对金黄色葡萄球菌(ATCC-6538)和大肠杆菌的CFU / mL降低了99.997%(4.8 log个单位)和97%(1.8 log个单位)科尔。可见光照射(LED灯,30分钟,35 +/- 5 mW / cm(2))后分别产生8099应变,表明归因于MMT掺杂的光敏剂负载增加导致光动力增加1-2 log单位灭活效果优于未掺杂的MB装饰的P(MMA-co-MAA)母体共聚物(金黄色葡萄球菌和大肠杆菌分别降低99.9%和84%)。结果表明,MMT和类似的添加剂可能是提高阳离子光敏剂在静电纺丝纳米纤维中的吸附能力的通用方法,从而生成具有改善的光动力灭活效果的材料,而不会显着改变纤维的形态,成本或易于生产。

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