Department of Science, College of Basic Education, PAAET, Post code 23167, Aridiya, Kuwait.
Department of Medical Laboratory Sciences, Faculty of Applied Medical Sciences, King Abdulaziz University, Jeddah, Saudi Arabia; Special Infectious Agents Unit, King Fahad Medical Research Center, Jeddah, Saudi Arabia.
Trop Biomed. 2023 Sep 1;40(3):356-362. doi: 10.47665/tb.40.3.013.
We aimed at determination of acaricidal, larvacidal, and repellent activities of green synthesized silver nanoparticles (SNP) against Hyalomma dromedarii as one of the most common ticks in camels. SNP were green synthesized by reducing Lupinus albus extract through the precipitation technique. The acaricidal, larvicidal, and repellent activity of SNP against H. dromedarii was studied through the adult immersion test (AIT), the larval packet test (LPT), the vertical movement behavior of tick's larvae method, anti-acetylcholinesterase (AChE) activity, and oxidative enzyme activity. The green synthesized SNP displayed a spherical form with a size ranging from 25-90 nm; whereas the most distribution of particles size was reported at 50-65 nm. SNP dose-dependently (p<0.001) increased the mortality rate of H. dromedarii adult; whereas at 16 and 32 µg/mL completely killed the adult females. Treatment of exposure of H. dromedarii adult to SNP markedly (p<0.001) declined the mean number, weight, and hatchability of eggs. Treatment of H. dromedarii larvae with SNP reduced the viability rate of larvae with the LC and LC values of 3.1 and 6.9 µg/mL, respectively. Exposure of H. dromedarii larvae to SNP, especially at ½ LC50 and LC50, markedly (p<0.001) increased the oxidative stress and declined the level of antioxidant enzymes in H. dromedarii larvae; whereas, markedly suppressed the AChE activity of the larvae stage of H. dromedarii in comparison to the control group. These results showed that SNP green synthesized by L. albus extract had promising acaricidal, larvicidal and repellent activity against H. dromedarii adults and larvae as a dose-dependent response. SNP also considrably decreased the level of acetylcholinesterase and antioxidant activity and also provokes oxidative stress in H. dromedarii larvae. However, more investigation must be designed to clear the accurate mechanisms and the efficacy of SNP in practical use.
我们旨在确定通过沉淀技术还原羽扇豆提取物合成的银纳米粒子(SNP)对作为骆驼中最常见的蜱之一的三趾跳瘙的杀蜱、杀幼虫和驱避活性。通过成虫浸浴试验(AIT)、幼虫包被试验(LPT)、幼虫垂直运动行为方法、抗乙酰胆碱酯酶(AChE)活性和氧化酶活性研究 SNP 对 H. dromedarii 的杀蜱、杀幼虫和驱避活性。合成的 SNP 呈现出球形,尺寸范围为 25-90nm;而粒径的最分布报告在 50-65nm。SNP 剂量依赖性地(p<0.001)增加 H. dromedarii 成虫的死亡率;而在 16 和 32μg/mL 时完全杀死雌性成虫。暴露于 SNP 处理的 H. dromedarii 成虫显著(p<0.001)降低了卵的平均数量、重量和孵化率。用 SNP 处理 H. dromedarii 幼虫降低了幼虫的存活率,LC 和 LC 值分别为 3.1 和 6.9μg/mL。暴露于 SNP 处理的 H. dromedarii 幼虫,特别是在 1/2 LC50 和 LC50 时,显著(p<0.001)增加了氧化应激并降低了 H. dromedarii 幼虫的抗氧化酶水平;而与对照组相比,显著抑制了 H. dromedarii 幼虫阶段的乙酰胆碱酯酶活性。这些结果表明,由羽扇豆提取物合成的 SNP 对 H. dromedarii 成虫和幼虫具有良好的杀蜱、杀幼虫和驱避活性,呈剂量依赖性反应。SNP 还显著降低了乙酰胆碱酯酶和抗氧化活性水平,并在 H. dromedarii 幼虫中引起氧化应激。然而,必须设计更多的研究来阐明 SNP 在实际应用中的准确机制和功效。