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首页> 外文期刊>Journal of Fish Diseases >Involvement of xanthine oxidase inhibition with the antioxidant property of nanoencapsulated Melaleuca alternifolia essential oil in fish experimentally infected with Pseudomonas aeruginosa
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Involvement of xanthine oxidase inhibition with the antioxidant property of nanoencapsulated Melaleuca alternifolia essential oil in fish experimentally infected with Pseudomonas aeruginosa

机译:黄嘌呤氧化酶抑制与纳米封闭的Melaleuca allyifolia精油在实验感染的Pseudomonas Aeruginosa的抗氧化特性

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Nanoencapsulated Melaleuca alternifolia essential oil (tea tree oil, TTO) is a natural alternative treatment, with 100% therapeutic efficacy in fish experimentally infected with Pseudomonas aeruginosa, and has also potent protective effects linked with antioxidant properties. However, the pathways responsible for the antioxidant capacity remain unknown. Thus, this study evaluated whether the inhibition of seric xanthine oxidase (XO) activity can be considered a pathway involved in the antioxidant capacity of nanoencapsulated TTO in fish experimentally infected with P.aeruginosa. Seric samples from fish infected with P.aeruginosa showed increased XO activity, as well as increased uric acid and reactive oxygen species (ROS) levels. In contrast, the prophylactic treatment with nanoencapsulated TTO prevented these infection-induced alterations. Based on the evidence obtained, the upregulation of seric XO activity induced pro-oxidative effects in the serum of fish experimentally infected with P.aeruginosa, due to excessive formation of uric acid, which stimulates the release of ROS. This treatment was able to prevent the upregulated seric XO activity and, consequently, the excessive formation of uric acid and ROS. In summary, inhibition of seric XO activity can be considered a pathway involved in the antioxidant capacity of nanoencapsulated TTO in fish experimentally infected with P.aeruginosa.
机译:纳米封闭的Melaleuca allyifolia精油(茶树油,TTO)是一种自然的替代治疗,在实验感染铜绿假单胞菌的鱼类中有100%的鱼类治疗效果,也具有与抗氧化特性相关的有效的保护作用。然而,负责抗氧化能力的途径仍然是未知的。因此,该研究评估了丝状黄嘌呤氧化酶(XO)活性的抑制是否可以被认为是在实验感染P.Aeruginosa的鱼中纳米封闭式TTO抗氧化能力的途径。来自p.aeruginosa的鱼类的丝状样本显示出XO活性增加,以及尿酸和反应性氧物质(ROS)水平增加。相反,纳米封闭的TTO预防性处理阻止了这些感染诱导的改变。基于所得证据,由于过度形成尿酸,促使ROS的释放,刺激了P.aeruginosa的鱼类血清Seric XO活性诱导促氧化作用的上调。这种处理能够防止上调的SERIC XO活性,从而过度地形成尿酸和ROS。总之,抑制SERIC XO活性的抑制可以被认为是在实验感染P.Aeruginosa的鱼类中纳米封闭式TTO抗氧化能力的途径。

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