Department of Botany, Arignar Anna Government Arts College, Namakkal, Tamil Nadu, India.
Department of Biomaterials, Saveetha Dental College and Hospital, Saveetha Institute of Medical and Technical Sciences, Saveetha University, Chennai, India.
Luminescence. 2024 Oct;39(10):e4913. doi: 10.1002/bio.4913.
The biosynthesis of nanoparticles is a crucial research area aimed at developing innovative, cost-effective, and eco-friendly synthesis techniques for various applications. Herein, we synthesized copper oxide nanoparticles (CuNPs) using Couroupita guianensis flower extract via a simple green synthesis method. These green CuNPs demonstrate promising antimicrobial activity and anticancer activity against A549 nonsmall cell lung cancer (NSCLC) cells. We comprehensively characterized the CuNPs using UV spectrum, XRD, FTIR, SEM, and EDS analyses. The antibacterial and anticancerous performance is attributed to their spherical-like morphology, which enhances effective interaction with bacterial and cancer cells. Moreover, CuNPs proved effective in inactivating Escherichia coli, achieving 2%, 52%, and 99% inactivation at 0, 30, and 60 min, respectively, and Listeria monocytogenes, achieving 1%, 48%, and 98% inactivation at 0, 30, and 60 min, respectively, under visible light. Furthermore, the CuNPs exhibited significant anticancer activity against A549 NSCLC cells, achieving cell viability reductions of 10%, 30%, 50%, 70%, 83%, and 91% at concentrations of 25, 50, 100, 150, 200, and 250 μg/mL, respectively. The green synthesized CuNPs demonstrate their potential in biomedical applications.
纳米粒子的生物合成是一个关键的研究领域,旨在开发创新、经济高效和环保的合成技术,用于各种应用。在此,我们使用 Couroupita guianensis 花提取物通过简单的绿色合成方法合成了氧化铜纳米粒子(CuNPs)。这些绿色 CuNPs 表现出有前途的抗菌活性和抗癌活性,可对抗 A549 非小细胞肺癌(NSCLC)细胞。我们使用 UV 光谱、XRD、FTIR、SEM 和 EDS 分析对 CuNPs 进行了全面表征。抗菌和抗癌性能归因于其球形形态,这增强了与细菌和癌细胞的有效相互作用。此外,CuNPs 有效地灭活了大肠杆菌,分别在 0、30 和 60 分钟时达到 2%、52%和 99%的失活率,以及李斯特菌,分别在 0、30 和 60 分钟时达到 1%、48%和 98%的失活率,在可见光下。此外,CuNPs 对 A549 NSCLC 细胞表现出显著的抗癌活性,在浓度为 25、50、100、150、200 和 250μg/mL 时,细胞活力分别降低了 10%、30%、50%、70%、83%和 91%。绿色合成的 CuNPs 证明了它们在生物医学应用中的潜力。