Bin Wu , Chaoji Xiong , Zhuo Xu , Kun Liang , Chunhua Wu , Wei Wu , Qian Chen
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引用次数: 0
摘要
为了合成绿色、低毒、新型的抗真菌药物。以松香胺为原料合成了松香基双季铵盐(Rbs),并对其对niveum oxysporum F. sp. sp. um . graminearum, V. mali, P. capsicica和a.solani的抑菌活性进行了评价。结果表明,与苯扎溴铵相比,Rbs对5种真菌均有较强的抑菌活性,其中对马里弧菌的抑菌活性最佳(EC50 = 3.071 μg/mL),且具有良好的持续抑菌活性。体内试验表明,Rbs对苹果具有显著的保护和治疗作用。通过SEM、TEM、相对膜通透性和密度泛函理论计算,我们发现Rbs会导致细胞器和细胞膜的破坏,导致细胞内容物渗漏,最终导致细胞死亡。小鼠毒理学结果表明,Rbs的毒性较低。这些研究为后续杀菌剂的开发提供了理论指导。
Renewable rosin-based bisquaternary ammonium salt with pyridyl design, synthesis and antifungal activity
In order to synthesize green, low-toxicity, and novel antifungal agents. In this study, a rosin-based bisquaternary ammonium salt (Rbs) was synthesized using rosin amine and evaluated for its antifungal activity against F. oxysporum f. sp. niveum, F. graminearum, V. mali, P. capsica and A. solani. The results show that compared to benzalkonium bromide, Rbs has stronger inhibitory activity against five types of fungi, with the best activity against V. mali (EC50 = 3.071 μg/mL), and has excellent sustained antifungal activity. In vivo tests have shown that Rbs has significant protective and therapeutic effects on apples. Using SEM, TEM, relative membrane permeability and density functional theory calculations, we found that Rbs causes organelle and cell membrane disruption, leading to leakage of cell contents and ultimately cell death. In addition, mouse toxicology showed that the toxicity of Rbs was low. These studies provide theoretical guidance for the development of subsequent fungicides.
期刊介绍:
Food Chemistry publishes original research papers dealing with the advancement of the chemistry and biochemistry of foods or the analytical methods/ approach used. All papers should focus on the novelty of the research carried out.