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Larvicidal activity and in vitro effects of green tea (Camellia sinensis L.) water infusion

机译:茶绿茶水的杀幼虫活性及体外作用

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?abar, A., Cvetkovi?, V., Rajkovi?, J., Jovi?, J., Vasiljevi?, P., Mitrovi?, T.: Larvicidal activity and in vitro effects of green tea ( Camellia sinensis L.) water infusion. Biologica Nyssana, 4 (1-2), December 2013: 75-79. In this study green tea water infusion was tested on Drosophila melanogaster wild-type larvae in vivo, also an in vitro antihemolytic and hemolytic tests were performed. Three different concentrations were used 7.5 mg/ml, 37.5 mg/ml and 75 mg/ml, the lowest dose representing the recommended dose followed by five times and ten times higher doses. Effect of these three concentrations was monitored and tested in vivo on Drosophila melanogaster (Meigen, 1830) wt (wild type) larval development and surviving. All three concentrations showed toxic effect for larvae, with toxicity being increased in dose – depended manner. The time needed for larvae to fully develop was delayed. This decrease of developmental time was in dose – dependent manner, too. Amount of hemolysis caused by the lowest concentration was very small when compared with the percent of spontaneous hemolysis. Other two higher concentrations, 37.5 mg/ml and 75 mg/ml, showed higher hemolytic effect. During the four hour incubation period percent of hemolysis grew in time – dependent manner. The highest hemolytic effect was recorded for the concentration of 37.5 mg/ml. Antihemolytic test showed that the lowest concentration had the highest inhibitory effect to H2O2 induced hemolysis. The 37.5 mg/ml and 75 mg/ml concentrations had lower inhibitory effect when compared with the dose of 7.5 mg/ml. According to our study it can be concluded that the high concentrations of green tea water infusion exhibit larvicidal activity against D. melanogaster larvae, don't have protective effect to RBC membrane and cause greater hemolysis.
机译:Abar,A.,Cvetkovi,V.,Rajkovi ?, J.,Jovi ?, J.,Vasiljevi ?, P.,Mitrovi ?, T .:绿茶的杀幼虫活性和体外作用(山茶)。 )注水。 Nologics Biologica Nyssana,4(1-2),2013年12月:75-79。在这项研究中,对果蝇野生型幼虫体内的绿茶水注入进行了测试,还进行了体外抗溶血和溶血测试。三种不同的浓度分别为7.5 mg / ml,37.5 mg / ml和75 mg / ml,最低剂量代表推荐剂量,其次是高剂量的五倍和十倍。监测并测试了这三个浓度对果蝇(Meigen,1830)wt(野生型)幼虫发育和存活的影响。这三种浓度均显示出对幼虫的毒性作用,毒性取决于剂量而增加。幼虫完全发育所需的时间被延迟。发育时间的减少也是剂量依赖性的。与自发溶血的百分比相比,由最低浓度引起的溶血量很小。其他两个更高的浓度(37.5 mg / ml和75 mg / ml)显示出更高的溶血作用。在四个小时的潜伏期中,溶血的百分数随时间而增长。浓度为37.5 mg / ml时,溶血作用最高。抗溶血试验表明,最低浓度对H2O2诱导的溶血具有最高的抑制作用。当与7.5mg / ml的剂量相比时,37.5mg / ml和75mg / ml的浓度具有较低的抑制作用。根据我们的研究,可以得出结论,高浓度的绿茶水输注对黑腹果蝇幼虫具有杀幼虫活性,对红细胞膜没有保护作用,并引起更大的溶血作用。

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