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Bacterial Photoinactivation Using PLGA Electrospun Scaffolds

机译:使用PLGA Electromact支架的细菌光灭活

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The use of ultraviolet (UV) and blue irradiation to sterilize surfaces is well established, but commercial applications would be enhanced if the light source is replaced with ambient light. In this paper, it is shown that nanofibers can be explored as an alternative methodology to UV and blue irradiation for bacterial inactivation. It is demonstrated that this is indeed possible using spun nanofibers of poly[lactic-co -(glycolic acid)] (PLGA). This work shows that PLGA spun scaffolds can promote photoinactivation of Staphylococcus aureus and Escherichia coli bacteria with ambient light or with laser irradiation at 630 nm. With the optimized scaffold composition of PLGA85:15 nanofibers, the minimum intensity required to kill the bacteria is much lower than in antimicrobial blue light applications. The enhanced effect introduced by PLGA scaffolds is due to their nanofiber structures since PLGA spun nanofibers were able to inactivate both S. aureus and E. coli bacteria, but cast films had no effect. These findings pave the way for an entirely different method to sterilize surfaces, which is less costly and environmentally friendly than current procedures. In addition, the scaffolds could also be used in cancer treatment with fewer side effects since photosensitizers are not required.
机译:利用紫外线(UV)和蓝色辐射对表面进行消毒已经很成熟,但如果用环境光代替光源,商业应用将得到加强。在本文中,纳米纤维可以作为紫外线和蓝光灭活细菌的替代方法。研究表明,使用聚[乳酸-co-(乙醇酸)](PLGA)纺制的纳米纤维确实是可能的。这项研究表明,PLGA旋转支架可以在环境光或630nm激光照射下促进金黄色葡萄球菌和大肠杆菌的光灭活。通过优化PLGA85:15纳米纤维的支架组成,杀死细菌所需的最低强度远低于抗菌蓝光应用。PLGA支架的增强效果是由于其纳米纤维结构,因为PLGA纺制的纳米纤维能够灭活金黄色葡萄球菌和大肠杆菌,但铸膜没有效果。这些发现为一种完全不同的表面消毒方法铺平了道路,这种方法比目前的方法成本更低,环境友好。此外,由于不需要光敏剂,这种支架也可以用于癌症治疗,副作用较少。

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