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从 Cordia myxa 树胶中绿色合成多功能氧化锌纳米粒子;及其对硝基苯酚的催化还原、抗癌和抗菌活性。

Green synthesis of Multifunctional Zinc oxide Nanoparticles from Cordia myxa gum; and their Catalytic Reduction of Nitrophenol, Anticancer and Antimicrobial Activity.

机构信息

School of Chemical Engineering, Yeungnam University, 280 Daehak-Ro, Gyeongsan, Gyeongbuk, 38541, Republic of Korea.

出版信息

Int J Biol Macromol. 2023 Dec 31;253(Pt 3):126788. doi: 10.1016/j.ijbiomac.2023.126788. Epub 2023 Sep 15.

DOI:10.1016/j.ijbiomac.2023.126788
PMID:37717862
Abstract

In situ exfoliated natural polysaccharide Cordia myxa (CMX) is used to promote the utilization of zinc-oxide nanoparticles for eco-friendly catalytic hydrogenation of p-nitrophenol (p-NP) and microbial growth inhibition. Polysaccharide-mediated biosynthetic nanocomposite materials are interesting because they are cheap, green, and environmentally friendly. This study uses CMX gum as a bioreduction to produce multifunctional, environmentally friendly zinc-oxide nanocomposites (ZnO NPs). The process involves a low reaction time and temperature and utilizes CMX as a reducing and stabilizing agent. The structural, morphological, and optical properties of the CMX-ZnO nanocomposite were characterized. The biosynthetic CMX-ZnO NPs exhibited robust catalytic activity and recycling capacity for rapidly oxidizing hazardous p-NPs. The complete reduction of 4-NP to CMX-ZnO NPs in excess NaBH was achieved within 15 min, with recyclability and pseudo-first-order kinetics with a rate constant of 0.2571 min. Additionally, human colon cancer (HCT116) and 3T3L1 cell lines were remarkably sensitive to the cytotoxic effects of ZnO nanoparticles. CMX-ZnO NPs exhibited potent antibacterial properties against human pathogenic gram-positive and gram-negative bacteria (Bacillus, Salmonella, E. coli, and Pseudomonas aeruginosa) based on the zone of inhibition measured by the disc-diffusion method. The significant antibacterial activity of CMX-ZnO NPs can overcome the current limitations associated with removing water-soluble organic pollutants and microbiological contaminants for long-term environmental sustainability.

摘要

原位剥离的天然多糖卡多姆木(CMX)被用于促进氧化锌纳米粒子在环保催化氢化对硝基苯酚(p-NP)和微生物生长抑制中的应用。多糖介导的生物合成纳米复合材料因其廉价、绿色和环保而受到关注。本研究使用 CMX 胶作为生物还原剂来制备多功能、环保的氧化锌纳米复合材料(ZnO NPs)。该过程涉及低反应时间和温度,并利用 CMX 作为还原剂和稳定剂。CMX-ZnO 纳米复合材料的结构、形态和光学性质进行了表征。生物合成的 CMX-ZnO NPs 表现出强大的催化活性和循环能力,可快速氧化危险的 p-NPs。在过量的 NaBH 中,4-NP 可在 15 分钟内完全还原为 CMX-ZnO NPs,具有可回收性和准一级动力学,速率常数为 0.2571 min。此外,人结肠癌细胞(HCT116)和 3T3L1 细胞系对 ZnO 纳米粒子的细胞毒性作用非常敏感。基于抑菌圈法测量的抑菌圈,CMX-ZnO NPs 对人致病性革兰氏阳性和革兰氏阴性细菌(芽孢杆菌、沙门氏菌、大肠杆菌和铜绿假单胞菌)表现出强烈的抗菌活性。CMX-ZnO NPs 的显著抗菌活性可以克服目前在去除水溶性有机污染物和微生物污染物方面的局限性,以实现长期的环境可持续性。

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