Pekkoh Jeeraporn, Ruangrit Khomsan, Kaewkod Thida, Tragoolpua Yingmanee, Hoijang Supawitch, Srisombat Laongnuan, Wichapein Antira, Pathom-Aree Wasu, Kato Yasuo, Wang Guangce, Srinuanpan Sirasit
Department of Biology, Faculty of Science, Chiang Mai University, Chiang Mai 50200, Thailand.
Multidisciplinary Research Institute, Chiang Mai University, Chiang Mai 50200, Thailand.
Nanomaterials (Basel). 2023 Jul 24;13(14):2141. doi: 10.3390/nano13142141.
Harmful algal blooms impact human welfare and are a global concern. spp., a type of algae or seaweed that can potentially bloom in certain regions of the sea around Thailand, exhibits a noteworthy electron capacity as the sole reducing and stabilizing agent, which suggests its potential for mediating nanoparticle composites. This study proposes an eco-friendly microwave-assisted biosynthesis (MAS) method to fabricate silver nanoparticles coated with aqueous extract (Ag/AgCl-NPs-ME). Ag/AgCl-NPs-ME were successfully synthesized in 1 min using a 20 mM AgNO solution without additional hazardous chemicals. UV-visible spectroscopy confirmed their formation through a surface plasmon resonance band at 400-500 nm. XRD and FTIR analyses verified their crystalline nature and involvement of organic molecules. TEM and SEM characterization showed well-dispersed Ag/AgCl-NPs-ME with an average size of 36.43 nm. The EDS results confirmed the presence of metallic Ag and Cl ions. Ag/AgCl-NPs-ME exhibited significant antioxidant activity against free radicals (DPPH, ABTS, and FRAP), suggesting their effectiveness. They also inhibited enzymes (tyrosinase and ACE) linked to diseases, indicating therapeutic potential. Importantly, the Ag/AgCl-NPs-ME displayed remarkable cytotoxicity against cancer cells (A375, A549, and Caco-2) while remaining non-toxic to normal cells. DNA ladder and TUNEL assays confirmed the activation of apoptosis mechanisms in cancer cells after a 48 h treatment. These findings highlight the versatile applications of Ag/AgCl-NPs-ME in food, cosmetics, pharmaceuticals, and nutraceuticals.
有害藻华影响人类福祉,是一个全球关注的问题。在泰国周边海域的某些区域可能大量繁殖的一种藻类或海藻——[此处原文缺失具体藻类名称],作为唯一的还原和稳定剂,表现出值得注意的电子容量,这表明其在介导纳米颗粒复合材料方面的潜力。本研究提出了一种生态友好的微波辅助生物合成(MAS)方法来制备包覆有水提取物的银纳米颗粒(Ag/AgCl-NPs-ME)。使用20 mM硝酸银溶液在1分钟内成功合成了Ag/AgCl-NPs-ME,无需额外的有害化学物质。紫外可见光谱通过400 - 500 nm处的表面等离子体共振带证实了它们的形成。XRD和FTIR分析验证了它们的晶体性质以及有机分子的参与。TEM和SEM表征显示Ag/AgCl-NPs-ME分散良好,平均尺寸为36.43 nm。EDS结果证实了金属银和氯离子的存在。Ag/AgCl-NPs-ME对自由基(DPPH、ABTS和FRAP)表现出显著的抗氧化活性,表明其有效性。它们还抑制与疾病相关的酶(酪氨酸酶和血管紧张素转换酶),显示出治疗潜力。重要的是,Ag/AgCl-NPs-ME对癌细胞(A375、A549和Caco-2)表现出显著的细胞毒性,而对正常细胞无毒。DNA梯状条带和TUNEL分析证实了48小时处理后癌细胞中凋亡机制的激活。这些发现突出了Ag/AgCl-NPs-ME在食品、化妆品、制药和营养保健品中的广泛应用。