利用红树(海桑)叶提取物制备银纳米粒子和金纳米粒子的简便方法及其细胞毒性和杀幼虫活性。
Facile synthesis of silver and gold nanoparticles using mangrove (Avicennia marina) leaves extract and its cytotoxicity and larvicidal activity.
机构信息
Research Center for Advanced Materials Science (RCAMS), King Khalid University, Abha, Saudi Arabia/Center of Bee Research and its Products, King Khalid University, Abha, Saudi Arabia/Biology Department, Faculty of Science, King Khalid University, Abha, Saudi Arabia.
Center of Bee Research and its Products, King Khalid University, Abha, Saudi Arabia/Applied College, Mahala Campus, King Khalid University, Abha, Saudi Arabia.
出版信息
Pak J Pharm Sci. 2024 Mar;37(2):297-305.
The field of bio-fabricated noble metallic nanoparticles (NPs) has gained significant attention in applied research due to their eco-friendly and biocompatible nature. This study focuses on employing a green synthesis method to produce silver and gold nanoparticles (bio-fabricated) using a Mangrove plant extract and assessing their insecticidal and growth-inhibitory effects for environmentally friendly pest control. The resulting NPs underwent comprehensive characterization through various spectroscopy techniques. The morphology of both silver and gold mediated nanoparticles of Avicennia marina leaf extract displayed a spherical shape, with average sizes measuring around 70-80 nm and 95-100 nm, respectively. Regarding cytotoxicity, the inhibitory effects of silver nanoparticles were less than that observed by the extract alone while gold nanoparticles showed stronger cell growth inhibitory effects on splenic cells. The hepatic toxicity of silver and gold nanoparticles showed significant toxic effects as compared to A. marina extract alone. Notably, as prepared silver nanoparticles exhibited substantial larvicidal toxicity as compared to gold nanoparticles, when tested against fourth instar Culex pipiens larvae. These biocompatible silver and gold nanoparticles prepared from A. marina leaf extract hold promise for future applications as larvicides to effectively control mosquito species.
生物制造的贵金属纳米粒子(NPs)领域由于其环保和生物相容性而在应用研究中受到了极大关注。本研究采用绿色合成方法,使用红树林植物提取物来生产银和金纳米粒子(生物制造),并评估它们在环保型害虫防治方面的杀虫和生长抑制作用。所得 NPs 通过各种光谱技术进行了全面表征。来自 Avicennia marina 叶提取物的银和金介导的纳米粒子的形态均呈球形,平均尺寸分别约为 70-80nm 和 95-100nm。关于细胞毒性,银纳米粒子的抑制作用小于单独使用提取物时观察到的抑制作用,而金纳米粒子对脾细胞的生长抑制作用更强。与单独的 A. marina 提取物相比,银和金纳米粒子的肝毒性表现出显著的毒性作用。值得注意的是,与金纳米粒子相比,所制备的银纳米粒子对第四龄库蚊幼虫表现出显著的杀幼虫毒性。这些由 A. marina 叶提取物制备的生物相容性银和金纳米粒子有望作为杀幼虫剂用于有效控制蚊子物种。