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首页> 外文期刊>Journal of Photochemistry and Photobiology, B. Biology: Official Journal of the European Society for Photobiology >Advancement of Near-infrared (NIR) laser interceded surface enactment of proline functionalized graphene oxide with silver nanoparticles for proficient antibacterial, antifungal and wound recuperating therapy in nursing care in hospitals
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Advancement of Near-infrared (NIR) laser interceded surface enactment of proline functionalized graphene oxide with silver nanoparticles for proficient antibacterial, antifungal and wound recuperating therapy in nursing care in hospitals

机译:近红外(NIR)激光促进脯氨酸官能化石墨烯氧化物与银纳米颗粒的地表颁布,用于妥善抗菌,抗真菌和伤口恢复治疗医院的疗养

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摘要

Medication obstruction of microscopic organisms has turned into a worldwide medical issue, as it makes the ordinary anti-toxins less effective. It is desperately expected to investigate novel antibacterial materials and create viable treatment techniques to defeat the medication obstruction of anti-infection agents. Herein, we effectively fabricated silver nanoparticles improved proline/graphene oxide nano-flakes (GO-Pro/n-Ag) as novel anti-pathogenic substance through simplistic technique. The property of the silver nanoparticles activated discharge gave amazing antibacterial and antifungal movement against the pathogenic microorganism. Upon supply of NIR, the graphene oxide based biomaterials privately increased the temperature, bringing about the high mortality of pathogenic microorganism. The GO-Pro biocomposite activated n-Ag particles discharging approach for antibacterial, antifungal enables n-Ag to be ensured by proline layout without influencing normal cells. The biocomposites provided antibacterial and antifungal movement against S. aureus, P.aeruginosa, C. albicans and S. cerevisia. Also, the L929 mouse fibroblast cells were utilized for cytocompatibility assessment, and the GO-Pro/n-Ag demonstrated low lethality. Likewise, the GO-Pro/n-Ag and GO-Pro/n-Ag + NIR are set up for in vivo tests and demonstrate incredible antibacterial property in wound model. As the fabricated GO-Pro/n-Ag biocomposite nano-flakes have the benefits of minimal effort and high anti-pathogenic activity, they may be of promising and helpful antibacterial and antifungal specialists for various biomedical applications.
机译:微观生物的药物障碍已经变成了全球医学问题,因为它使普通的抗毒素效率较低。预计探讨了新型抗菌材料,并营造了可行的处理技术,以击败抗感染剂的药物障碍。在此,我们通过简化技术有效地制造了银纳米颗粒改进的脯氨酸/石墨烯氧化物纳米片(GO-PRO / N-AG)作为新的抗致病物质。银纳米粒子活化放电的性质对致病微生物进行了惊人的抗菌和抗真菌运动。在供应NIR后,石墨烯基生物材料私下增加了温度,引起了致病微生物的高死亡率。 Go-Pro生物复合活化的N-Ag颗粒排出方法用于抗菌,抗真菌能够通过脯氨酸布局确保不影响正常细胞的N-AG。生物复合材料提供针对金黄色葡萄球菌,P.Aeruginosa,C. albicans和S.Cerevisia的抗菌和抗真菌运动。此外,L929小鼠成纤维细胞用于细胞织立性评估,并且GO-PRO / N-AG证明了低致死性。同样,Go-Pro / N-Ag和Go-Pro / N-Ag + Nir用于体内试验,并在伤口模型中表现出令人难以置信的抗菌性质。由于制造的GO-PRO / N-AG生物复合纳米薄膜具有最小努力和高抗致病性活性的益处,它们可能具有对各种生物医学应用的有前途和有用的抗菌和抗真菌专家。

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