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首页> 外文期刊>Scientific reports. >Facile One Pot Greener Synthesis of Sophorolipid Capped Gold Nanoparticles and its Antimicrobial Activity having Special Efficacy Against Gram Negative Vibrio cholerae
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Facile One Pot Greener Synthesis of Sophorolipid Capped Gold Nanoparticles and its Antimicrobial Activity having Special Efficacy Against Gram Negative Vibrio cholerae

机译:Facile一个盆栽绿色合成的Sophorolipid Lapped金纳米粒子及其具有特殊疗效的抗菌活性对革兰根负振动胶囊

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摘要

Microbes develop several strategies to survive in the adverse condition such as biofilm formation, attaining non-dividing state, altering drug target or drug, thereby increases the burden of drug dosage. To combat these issues, nanoparticles have shown an alternative approach for new treatment strategy but synthesis via chemical synthetic route limits their application in biomedical field. Here, green method for the synthesis of gold nanoparticles using sophorolipid (SL) is discussed that is characterized by various techniques. Initially, the antimicrobial activity was checked against metabolically active state of microbes; Gram-positive Staphylococcus aureus and Gram-negative Vibrio cholerae using XTT assay and growth kinetics assay. Results suggested higher efficacy of nanoparticles for Gram-negative, therefore further analyzed against Escherichia coli that confirmed its potency for the same. AuNPs-SL also signifies its efficiency at least metabolically active state; non dividing cells and biofilm of these microbes. Induced morphological changes were studied by SEM that revealed AuNPs-SL led to disruption of cell membrane and leakage of intracellular fluid to the surroundings. Inhibition of respiratory enzymes activity also plays a crucial role in bactericidal action as indicated by LDH assay. Synergy of AuNPs-SL with different antibiotics was also analyzed using checkerboard assay. These results suggested the possible use of AuNPs-SL as an antimicrobial therapy in the field of nanomedicine.
机译:微生物在诸如生物膜形成的不利条件下产生几种策略,达到非分裂状态,改变药物或药物,从而增加药物剂量的负担。为了对抗这些问题,纳米颗粒已经显示了一种新的治疗策略的替代方法,但通过化学合成路线的合成限制了它们在生物医学领域的应用。这里,讨论了使用Sophorlipid(SL)合成金纳米颗粒的绿色方法,其特征在于各种技术。最初,检查抗微生物活性以反对代谢活性的微生物状态;使用XTT测定和生长动力学测定的革兰氏阳性金黄色葡萄球菌和革兰氏阴性弧菌霍乱。结果表明纳米颗粒的蛋白质效果较高,因此进一步分析了大肠杆菌,证实了其效力。 AUNPS-SL还至少代谢活跃状态表示其效率;非分割细胞和这些微生物的生物膜。通过SEM研究了诱导的形态变化,揭示了AUNPS-SL导致细胞膜破坏和细胞内液体泄漏到周围环境。呼吸酶活性的抑制也在杀菌作用中起到至关重要的作用,如LDH测定所示。使用棋盘测定还分析了具有不同抗生素的AUNPS-SL的协同作用。这些结果表明,在纳米医生领域中可能使用AUNPS-SL作为抗微生物治疗。

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