Research Institute of Biotechnology and Medical Converged Science, Dongguk University-Seoul, Ilsandong-gu, Goyang-si, Gyeonggi-do 10326, Republic of Korea.
Department of Food Science and Biotechnology, Dongguk University-Seoul, Ilsandong-gu, Goyang-si, Gyeonggi-do 10326, Republic of Korea.
Int J Biol Macromol. 2019 May 1;128:391-400. doi: 10.1016/j.ijbiomac.2019.01.120. Epub 2019 Jan 23.
Lignin, is the most abundant, renewable and degradable biopolymer available in the nature. The present study exploited purified lignin from wheat straw as reducing, capping and stabilizing agent for the green synthesis of silver nanoparticles (Li-AgNPs) under optimized conditions. The analytical studies revealed synthesized Li-AgNPs having a face centered cubic crystalline structure, size ranging ~15-20 nm and the biomolecules comprising majorly phenolic, hydroxyl and carboxylic group of lignin coated on the surface of AgNPs. Li-AgNPs showed significant antimicrobial efficacy against human pathogens namely; Staphylococcus aureus and Escherichia coli and also determined their minimum inhibitory and minimum bactericidal concentration (MIC and MBC). Li-AgNPs also displayed substantial antioxidant activity in terms of well-known enzyme marker viz.; ABTS and DPPH free radical scavenging assay relative to commercial AgNPs. In vitro cytotoxicity assay of Li-AgNPs demonstrated dose-dependent toxicity effects in SKOV3 ovarian cancer cell line (LD50; 150 μg/mL) indicative of promising anticancer agent. Further, HO sensing ability of stabilized Li-AgNPs exhibited its vital role in determining reactive oxygen species. Synthesis of Li-AgNPs is a cheap green technology and could exhibit its commercial use in biomedical, cosmetic, and pharmaceutical industry.
木质素是自然界中最丰富、可再生和可降解的生物聚合物。本研究利用从麦草中提取的纯化木质素作为还原剂、封端剂和稳定剂,在优化条件下绿色合成了银纳米粒子(Li-AgNPs)。分析研究表明,合成的 Li-AgNPs 具有面心立方晶体结构,尺寸约为 15-20nm,生物分子主要由木质素的酚、羟基和羧基组成,包覆在 AgNPs 表面。Li-AgNPs 对人类病原体金黄色葡萄球菌和大肠杆菌表现出显著的抗菌功效,并测定了它们的最小抑菌浓度(MIC)和最小杀菌浓度(MBC)。Li-AgNPs 在 ABTS 和 DPPH 自由基清除试验等著名的酶标记物方面也表现出显著的抗氧化活性,相对商业 AgNPs 而言。Li-AgNPs 的体外细胞毒性试验表明,在 SKOV3 卵巢癌细胞系中具有剂量依赖性的毒性作用(LD50;150μg/mL),表明其是一种有前途的抗癌药物。此外,稳定的 Li-AgNPs 的 HO 传感能力显示了其在确定活性氧物种方面的重要作用。Li-AgNPs 的合成是一种廉价的绿色技术,可能在生物医学、化妆品和制药行业中具有商业用途。