抗真菌
石墨烯
纳米复合材料
氧化物
尖孢镰刀菌
壳聚糖
抗菌剂
意大利青霉菌
杀生物剂
材料科学
茉莉酸甲酯
核化学
食物腐败
化学
甲壳素
共轭体系
香兰素
食品科学
体外
复合数
生物高聚物
防腐剂
类胡萝卜素
作者
Abeer S. Elsherbiny,Alyaa Galal,Khalid M. Ghoneem,Nehal Salahuddin
出处
期刊:Biomaterials advances
[Elsevier BV]
日期:2024-04-18
卷期号:160: 213863-213863
被引量:5
标识
DOI:10.1016/j.bioadv.2024.213863
摘要
To obtain the collaborative antifungal potential of nanocomposites conjugated with graphene oxide (GO), a combination of GO with chitosan (CS/GO) and GO with chitosan (CS) and polyaniline (PANI/CS/GO) was carried out. The synthesized GO-nanocomposites were recognized by several techniques. Vanillin (Van.) and cinnamaldehyde (Cinn.) were loaded on the prepared nanocomposites as antioxidants through a batch adsorption process. In vitro release study of Van. and Cinn. from the nanocomposites was accomplished at pH 7 and 25°C. The antimicrobial activity of GO, CS/GO, and PANI/CS/GO was studied against tomato Fusarium oxysporum (FOL) and Pythium debaryanum (PYD) pathogens. The loaded ternary composite PANI/CS/GO exhibited the best percent of reduction against the two pathogens in vitro studies. The Greenhouse experiment revealed that seedlings' treatment by CS/GO/Van. and PANI/CS/GO/Van significantly lowered both disease index and disease incidence. The loaded CS/GO and PANI/CS/GO nanocomposites had a positive effect on lengthening shoots. Additionally, when CS/GO/Cinn., CS/GO/Van. and PANI/CS/GO/Van. were used, tomato seedlings' photosynthetic pigments dramatically increased as compared to infected control. The results show that these bio-nanocomposites can be an efficient, sustainable, nontoxic, eco-friendly, and residue-free approach for fighting fungal pathogens and improving plant growth.
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