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Significant effects of two pesticides on the bacteriostatic activity and antioxidant ability of green tea polyphenols

机译:两种农药对绿茶多酚的抑菌活性和抗氧化能力的显着影响

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摘要

Green tea polyphenols (GTPs) are widely used in food preservation because of their strong bacteriostatic activity and antioxidant ability, and whether pesticides as common pollutants in food will affect the function of GTPs is worthy of attention. Therefore, GTPs and two pesticides, namely, acetamiprid (ACE) and diquat dibromide (DIQ) commonly used on food crops were selected as research objects and Vibrio qinghaiensis sp.-Q67 (Q67) as the test organism to explore the effects of pesticide pollutants on the bacteriostatic activity of GTPs by the time-dependent microplate toxicity analysis method (t-MTA). The binary mixture systems of GTPs and two pesticides were designed by the direct equipartition ray design method (EquRay). The effect residual ratio (ERR) method was used to quantify the toxicity interactions of binary mixture systems. Besides, the effects of these two pesticides on the antioxidant capacity of GTPs were investigated. The results indicated that the bacteriostatic activity of GTPs upon interaction with the two pesticides shows certain time characteristics. These two pesticides can affect the bacteriostatic activity of GTPs, which is enhanced or weakened with prolonged duration, i.e. time-dependent synergism or antagonism. The bacteriostatic mechanism of the three substances and their mixtures is produced by affecting the cell morphology or destroying the cell structure, and the long-term antagonism of the three substances may be due to the competition for the active site. The two pesticides can greatly reduce the antioxidant capacity of GTPs. ACE reduces the free radical scavenging ability of GTPs by 14–24% and DIQ by 39–63% in the experimental concentration ratios. In addition, the free radical scavenging ability of GTPs decreases with the increase in the concentration ratio of the two pesticides in the mixture systems.
机译:绿茶多酚(GTPS)广泛用于食品保存,因为它们具有强烈的抑菌活性和抗氧化能力,以及食物中常见污染物的农药是否会影响GTP的功能值得关注。因此,选择GTPS和两种农药,即常用于食物作物的acetamiprid(ace)和肝脏二溴化物(DIQ)作为研究对象和vibrio青海森斯sp.-q67(q67)作为测试生物,以探索农药污染物的影响依赖于时间依赖性微孔族毒性分析方法(T-MTA)对GTP的抑菌活性。通过直接配备射线设计方法(EQURAY)设计了GTP和两种农药的二元混合物系统。效果残留比(ERR)方法用于量化二元混合体系的毒性相互作用。此外,研究了这两种农药对GTPS抗氧化能力的影响。结果表明,与两种农药相互作用的GTP的抑菌活性显示出一定的时间特征。这两种农药可以影响GTP的抑菌活性,其随着延长持续时间而增强或削弱,即时间依赖的协同作用或拮抗作用。通过影响细胞形态或破坏细胞结构来产生三种物质及其混合物的抑菌机制,并且三种物质的长期拮抗作用可能是由于活性位点的竞争。两种农药可以大大降低GTP的抗氧化能力。 ACE在实验浓度比中将GTP的自由基清除能力降低14-24%,DIQ 39-63%。此外,GTP的自由基清除能力随混合物系统中两种农药的浓度比的增加而降低。

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