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地锦草介导的银纳米粒子的绿色合成及其体外抗菌活性和动物模型伤口愈合的评估

Green Synthesis and Evaluation of Lepidium didymum-mediated Silver Nanoparticles for in vitro Antibacterial Activity and Wound Healing in the Animal Model.

作者信息

Deeba Farah, Parveen Sobia, Rashid Zermina, Aleem Ambreen, Raza Hina

机构信息

Department of Biochemistry and Biotechnology, The Women University.

Department of Pharmacy, The Women University.

出版信息

J Oleo Sci. 2023 Mar 30;72(4):429-439. doi: 10.5650/jos.ess22380. Epub 2023 Mar 10.

Abstract

Wounds serve as an appropriate medium for the growth of pathogenic bacteria, and bacterial resistance to already available antibiotics demands new and safe approaches in the field of medicine. Silver nanoparticles (AgNPs) exhibited a wide range of applications in biomedicine and emerged as promising nano-antibiotics. The biological preparation of AgNPs by utilizing aqueous plant extract has become an encouraging alternative to traditional chemical methodologies, owing to a viable eco-friendly approach. In the present study, Lepidium didymum leaves extract was used for the biosynthesis of AgNPs-LD. The nanoparticles were characterized through UV-Vis spectroscopy, Fourier transforms infrared spectrometry (FTIR), Scanning electron microscopy (SEM), and X-ray diffraction (XRD). The antibacterial activity of AgNPs-LD was evaluated against Staphylococcus aureus, Escherichia coli, Klebsiella pneumonia, and Pseudomonas aeruginosa. Further, AgNPs-LD nanoparticles were incorporated into topical gels to evaluate their effectiveness for wound healing in the rat model. UV-visible spectra showed a surface resonance peak around 400 nm correlated with the synthesis of AgNPs; FTIR spectra verified the participation of phytochemicals present in L. didymum leaves extract in AgNPs-LD synthesis; and SEM revealed dispersed spherical nanoparticles as well as aggregated clusters. XRD analysis confirmed the crystalline nature, face-centered cubic lattice, and average crystallite size of 21.42 nm. The AgNPs-LD showed promising antibacterial activity against tested strains with a maximum zone of inhibition against P. aeruginosa and showed accelerated wound healing capacity comparable to control and standard treatments over the time course of wound healing. The current study concluded that biosynthesized AgNPs-LD nanoparticles are effective as antibacterial agents and are promising novel wound healing products for clinical applications.

摘要

伤口是病原菌生长的适宜介质,细菌对现有抗生素的耐药性促使医学领域寻求新的安全方法。银纳米颗粒(AgNPs)在生物医学领域有广泛应用,成为有前景的纳米抗生素。利用植物水提取物生物制备AgNPs已成为传统化学方法的一种令人鼓舞的替代方法,因为它是一种可行的环保方法。在本研究中,二裂独行菜叶提取物用于生物合成AgNPs-LD。通过紫外可见光谱、傅里叶变换红外光谱(FTIR)、扫描电子显微镜(SEM)和X射线衍射(XRD)对纳米颗粒进行了表征。评估了AgNPs-LD对金黄色葡萄球菌、大肠杆菌、肺炎克雷伯菌和铜绿假单胞菌的抗菌活性。此外,将AgNPs-LD纳米颗粒掺入局部凝胶中,以评估其在大鼠模型中伤口愈合的有效性。紫外可见光谱显示在400 nm左右有一个表面共振峰,与AgNPs的合成相关;FTIR光谱证实了二裂独行菜叶提取物中存在的植物化学物质参与了AgNPs-LD的合成;SEM显示出分散的球形纳米颗粒以及聚集的团簇。XRD分析证实了其晶体性质、面心立方晶格和平均晶粒尺寸为21.42 nm。AgNPs-LD对测试菌株显示出有前景的抗菌活性,对铜绿假单胞菌的抑菌圈最大,并且在伤口愈合的时间过程中显示出与对照和标准治疗相当的加速伤口愈合能力。本研究得出结论,生物合成的AgNPs-LD纳米颗粒作为抗菌剂是有效的,并且是有前景的用于临床应用的新型伤口愈合产品。

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