Duong Nhat Linh, Nguyen Van Minh, Tran Thi A Ni, Phan Thi Diem Trinh, Tran Thi Bao Yen, Do Ba Long, Phung Anh Nguyen, Nguyen Thi Anh Thu, Ho Thanh Gia-Thien, Nguyen Tri
Ho Chi Minh City Open University, 97 Vo Van Tan Str., District 3, Ho Chi Minh City 700000, Vietnam.
MIDOLI Company Limited, Second Floor, 02-04 Alexandre de Rhodes, Ben Nghe, District 1, Ho Chi Minh City 700000, Vietnam.
ACS Omega. 2023 Mar 13;8(12):10968-10979. doi: 10.1021/acsomega.2c07559. eCollection 2023 Mar 28.
The synthesis of fungicides in eco-friendly and cost-effective ways is significantly essential for agriculture. Plant pathogenic fungi cause many ecological and economic issues worldwide, which must be treated with effective fungicides. Here, this study proposes the biosynthesis of fungicides, which combines copper and CuO nanoparticles (Cu/CuO) synthesized using durian shell (DS) extract as a reducing agent in aqueous media. Sugar and polyphenol compounds contained in DS, as the main phytochemicals acting in the reduction procedure, were extracted under different temperatures and duration conditions to obtain the highest yields. We confirmed the extraction process performed at 70 °C for 60 min to be the most effective in extracting sugar (6.1 g/L) and polyphenols (22.7 mg/L). We determined the suitable conditions for Cu/CuO synthesis using a DS extract as a reducing agent for a synthesis time of 90 min, a volume ratio of DR extract/Cu of 15:35, an initial pH solution of 10, a synthesis temperature of 70 °C, and a CuSO concentration of 10 mM. The characterization results of as-prepared Cu/CuO NP showed a highly crystalline structure of CuO and Cu with sizes estimated in the range of 40-25 nm and 25-30 nm, respectively. Through in vitro experiments, the antifungal efficacy of Cu/CuO against and was investigated by the inhibition zone. The green-synthesized Cu/CuO nanocomposites, which are potential antifungals against plant pathogens, exhibited excellent antifungal efficacy against both (MIC = 0.25 g/L, the diameter of the inhibition zone was 22.00 ± 0.52 mm) and (MIC = 0.0625 g/L, the diameter of the inhibition zone was 18.00 ± 0.58 mm). Cu/CuO nanocomosites prepared in this study could be a valuable suggestion for the control of plant pathogenic fungi affecting crop species globally.
以环保且经济高效的方式合成杀菌剂对农业至关重要。植物病原真菌在全球范围内引发了许多生态和经济问题,必须使用有效的杀菌剂进行处理。在此,本研究提出了杀菌剂的生物合成方法,该方法将使用榴莲壳(DS)提取物作为还原剂在水介质中合成的铜和氧化铜纳米颗粒(Cu/CuO)相结合。DS中含有的糖和多酚化合物作为还原过程中的主要植物化学物质,在不同温度和时长条件下进行提取以获得最高产量。我们确定在70°C下进行60分钟的提取过程对提取糖(6.1 g/L)和多酚(22.7 mg/L)最为有效。我们确定了以DS提取物作为还原剂合成Cu/CuO的合适条件,合成时间为90分钟,DR提取物/Cu的体积比为15:35,初始pH溶液为10,合成温度为70°C,硫酸铜浓度为10 mM。所制备的Cu/CuO纳米颗粒的表征结果显示,CuO和Cu具有高度结晶结构,尺寸分别估计在40 - 25 nm和25 - 30 nm范围内。通过体外实验,利用抑菌圈研究了Cu/CuO对[具体菌种1]和[具体菌种2]的抗真菌效果。绿色合成的Cu/CuO纳米复合材料作为潜在的植物病原体抗真菌剂,对[具体菌种1](MIC = 0.25 g/L,抑菌圈直径为22.00 ± 0.52 mm)和[具体菌种2](MIC = 0.0625 g/L,抑菌圈直径为18.00 ± 0.58 mm)均表现出优异的抗真菌效果。本研究制备的Cu/CuO纳米复合材料可为全球控制影响作物品种的植物病原真菌提供有价值的建议。