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利用水果提取物绿色合成氧化银纳米颗粒:表征与生物活性评估

Green Synthesis of Silver Oxide Nanoparticles from Fruit Extract: Characterization and Bioactivity Assessment.

作者信息

Zúñiga-Miranda Johana, Vaca-Vega David, Vizuete Karla, Carrera-Pacheco Saskya E, Gonzalez-Pastor Rebeca, Heredia-Moya Jorge, Mayorga-Ramos Arianna, Barba-Ostria Carlos, Coyago-Cruz Elena, Debut Alexis, Guamán Linda P

机构信息

Centro de Investigación Biomédica (CENBIO), Facultad de Ciencias de la Salud Eugenio Espejo, Universidad UTE, Quito 170527, Ecuador.

Centro de Nanociencia y Nanotecnología, Universidad de Las Fuerzas Armadas ESPE, Sangolquí 171103, Ecuador.

出版信息

Nanomaterials (Basel). 2024 Nov 22;14(23):1875. doi: 10.3390/nano14231875.

Abstract

The increasing prevalence of multidrug-resistant (MDR) pathogens, persistent biofilms, oxidative stress, and cancerous cell proliferation poses significant challenges in healthcare and environmental settings, highlighting the urgent need for innovative and sustainable therapeutic solutions. The exploration of nanotechnology, particularly the use of green-synthesized nanoparticles, offers a promising avenue to address these complex biological challenges due to their multifunctional properties and biocompatibility. Utilizing a green synthesis approach, Mf-AgONPs were synthesized and characterized using dynamic light scattering (DLS), transmission electron microscopy (TEM), X-ray diffraction (XRD), energy-dispersive X-ray spectroscopy coupled with scanning electron microscopy (EDS-SEM), UV-Vis spectroscopy, and Fourier transform infrared spectroscopy (FTIR). The Mf-AgONPs exhibited potent antibacterial effects against both non-resistant and MDR bacterial strains, with minimum inhibitory concentrations (MICs) ranging from 11.25 to 45 µg/mL. Mf-AgONPs also demonstrated significant antifungal efficacy, particularly against , with an MIC of 5.63 µg/mL. Moreover, the nanoparticles showed strong biofilm inhibition capabilities and substantial antioxidant properties, underscoring their potential to combat oxidative stress. Additionally, Mf-AgONPs exhibited pronounced anticancer properties against various cancer cell lines, displaying low IC values across various cancer cell lines while maintaining minimal hemolytic activity at therapeutic concentrations. These findings suggest that Mf-AgONPs synthesized via an eco-friendly approach offer a promising alternative for biomedical applications, including antimicrobial, antifungal, antioxidant, and anticancer therapies, warranting further in vivo studies to fully exploit their therapeutic potential.

摘要

多重耐药(MDR)病原体、持久性生物膜、氧化应激和癌细胞增殖的日益流行在医疗保健和环境环境中构成了重大挑战,凸显了对创新和可持续治疗解决方案的迫切需求。纳米技术的探索,特别是绿色合成纳米颗粒的使用,由于其多功能特性和生物相容性,为应对这些复杂的生物学挑战提供了一条有前景的途径。采用绿色合成方法,合成了Mf-AgONPs,并使用动态光散射(DLS)、透射电子显微镜(TEM)、X射线衍射(XRD)、能量色散X射线光谱与扫描电子显微镜联用(EDS-SEM)、紫外-可见光谱和傅里叶变换红外光谱(FTIR)对其进行了表征。Mf-AgONPs对非耐药和MDR细菌菌株均表现出强大的抗菌作用,最低抑菌浓度(MIC)范围为11.25至45µg/mL。Mf-AgONPs还表现出显著的抗真菌功效,尤其是对,MIC为5.63µg/mL。此外,纳米颗粒显示出强大的生物膜抑制能力和显著的抗氧化性能,强调了它们对抗氧化应激的潜力。此外,Mf-AgONPs对各种癌细胞系表现出明显的抗癌特性,在各种癌细胞系中显示出低IC值,同时在治疗浓度下保持最小的溶血活性。这些发现表明,通过生态友好方法合成的Mf-AgONPs为生物医学应用提供了一种有前景的替代方案,包括抗菌、抗真菌、抗氧化和抗癌疗法,值得进一步进行体内研究以充分发挥其治疗潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/525a/11643947/d8a72123251e/nanomaterials-14-01875-g001.jpg

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