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首页> 外文期刊>Environmental Science and Pollution Research >Managing wastes as green resources: cigarette butt-synthesized pesticides are highly toxic to malaria vectors with little impact on predatory copepods
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Managing wastes as green resources: cigarette butt-synthesized pesticides are highly toxic to malaria vectors with little impact on predatory copepods

机译:管理废物作为绿色资源:卷烟对接合成的杀虫剂对疟疾载体的毒性很大,对捕食性癌症造成的影响很小

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摘要

The development of novel mosquito control tools is a key prerequisite to build effective and reliable Integrated Vector Management strategies. Here, we proposed a novel method using cigarette butts for the synthesis of Ag nanostructures toxic to young instars of the malaria vector Anopheles stephensi , chloroquine (CQ)-resistant malaria parasites Plasmodium falciparum and microbial pathogens. The non-target impact of these nanomaterials in the aquatic environment was evaluated testing them at sub-lethal doses on the predatory copepod Mesocyclops aspericornis . Cigarette butt-synthesized Ag nanostructures were characterized by UV–vis and FTIR spectroscopy, as well as by EDX, SEM and XRD analyses. Low doses of cigarette butt extracts (with and without tobacco) showed larvicidal and pupicidal toxicity on An. stephensi . The LC~(50)of cigarette butt-synthesized Ag nanostructures ranged from 4.505?ppm (I instar larvae) to 8.070?ppm (pupae) using smoked cigarette butts with tobacco, and from 3.571 (I instar larvae) to 6.143?ppm (pupae) using unsmoked cigarette butts without tobacco. Smoke toxicity experiments conducted against adults showed that unsmoked cigarette butts - based coils led to mortality comparable to permethrin-based positive control (84.2 and 91.2%, respectively). A single treatment with cigarette butts extracts and Ag nanostructures significantly reduced egg hatchability of An. stephensi . Furthermore, the antiplasmodial activity of cigarette butt extracts (with and without tobacco) and synthesized Ag nanostructures was evaluated against CQ-resistant (CQ-r) and CQ-sensitive (CQ-s) strains of P. falciparum. The lowest IC~(50)values were achieved by cigarette butt extracts without tobacco, they were 54.63?μg/ml (CQ-s) and 63.26?μg/ml (CQ-r); while Ag nanostructure IC~(50)values were 72.13?μg/ml (CQ-s) and 77.33?μg/ml (CQ-r). In MIC assays, low doses of the Ag nanostructures inhibited the growth of Bacillus subtilis , Klebsiella pneumoniae and Salmonella typhi . Finally, the predation efficiency of copepod M. aspericornis towards larvae of An. stephensi did not decrease in a nanoparticle-contaminated environment, if compared to control predation assays. Overall, the present research would suggest that an abundant hazardous waste, such as cigarette butts, can be turned to an important resource for nanosynthesis of highly effective antiplasmodials and insecticides.
机译:新颖的蚊子控制工具的发展是建立有效可靠的综合传染媒介管理策略的主要先决条件。在这里,我们提出了一种使用香烟烟火的新方法,用于合成Ag纳米结构对疟疾血管素的幼苗,氯喹(CQ) - 抗生素疟疾疟原虫疟原虫和微生物病原体的胃窦瘤患者。评估这些纳米材料在水生环境中的非目标撞击在捕食性Copepod Mesocyclops Aspericornis上以亚致死剂量进行测试。通过UV-Vis和FTIR光谱,以及EDX,SEM和XRD分析,表征卷烟对接合成的AG纳米结构。低剂量的卷烟屁股提取物(有没有烟草)显示出幼稚癌和毒性毒性。 Stephensi。用烟草用烟熏香烟烟草和3.571(I Instar Larvae)到6.143(i instar幼虫)到8.070?ppm(i instar幼虫)的Lc〜(50).ppm(i instar幼虫)到8.070〜7.070?ppm(pppae)。 Pupae)使用没有烟草的未磨乳烟头。对成人进行的烟雾毒性实验表明,未磨损的烟头基线圈导致了与Permethrin的阳性对照相当的死亡率(分别为84.2和91.2%)。用香烟烟草提取物和Ag纳米结构的单一处理显着降低了蛋孵化率。 Stephensi。此外,评价卷烟靶嘴提取物(具有和不含烟草)和合成的Ag纳米结构的抗癌活性,并针对抗性(CQ-R)和CQ-敏感(CQ-S)的P. falciparum的CQ-Cantive(CQ-S)。通过没有烟草的卷烟对接提取物实现最低IC〜(50)值,它们为54.63Ω·μg/ ml(CQ-S)和63.26Ω·μg/ ml(CQ-R);虽然Ag纳米结构IC〜(50)值为72.13Ω·μg/ ml(CQ-S)和77.33×μg/ ml(CQ-R)。在MIC测定中,低剂量的AG纳米结构抑制了枯草芽孢杆菌,Klebsiella肺炎和沙门氏菌Typhi的生长。最后,Copepod M.Sescoricornis朝向幼虫的捕食效率。如果与控制捕食测定相比,斯蒂芬西没有减少纳米粒子污染的环境。总体而言,本研究表明,烟火烟等丰富的危险废物可以转向高效抗蛋白酶和杀虫剂的重要资源。

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