Laboratório de Doenças Parasitárias, Programa de Pós-Graduação em Ciências Veterinárias, Universidade Estadual do Ceará, Fortaleza, Brazil.
Laboratório de Química Analítica e Ambiental, Programa de Pós-Graduação em Ciências Naturais, Universidade Estadual do Ceará, Fortaleza, Brazil.
Parasitology. 2022 Oct;149(12):1631-1641. doi: 10.1017/S0031182022001135. Epub 2022 Sep 2.
This work aimed to evaluate the anthelmintic effect of carvone nanoemulsions on . Three R-carvone nanoemulsions were prepared: uncoated R-carvone nanoemulsions homogenized in a sonicator (UNAlg-son) and homogenized in an ultrahomogenizer (UNAlg-ultra) and sodium alginate-coated R-carvone (CNAlg-ultra). The physicochemical characterizations of the nanoemulsions were carried out. The anthelmintic activity was evaluated using egg hatch test (EHT), larval development test (LDT) and adult worm motility test (AWMT). Changes in cuticle induced in adult were evaluated by scanning electron microscopy (SEM). The results were subjected to analysis of variance and compared using the Tukey test ( < 0.05). The effective concentration to inhibit 50% (EC) of egg hatching and larval development was calculated. The particle sizes were 281.1 nm (UNAlg-son), 152.7 nm (UNAlg-ultra) and 557.8 nm (CNAlg-ultra), and the zeta potentials were −15 mV (UNAlg-son), −10.8 mV (UNAlg-ultra) and −24.2 mV (CNAlg-ultra). The encapsulation efficiency was 99.84 ± 0.01%. SEM of the nanoemulsions showed an increase in size. In EHT, the EC values of UNAlg-son, UNAlg-ultra and CNAlg-ultra were 0.19, 0.02 and 0.17 mg mL, respectively. In LDT, they were 0.29, 0.31 and 0.95 mg mL for UNAlg-son, UNAlg-ultra and CNAlg-ultra, respectively. The adult motility inhibition was 100% after 12 h of exposure to UNAlg-ultra and CNAlg-ultra, while for UNAlg-son, it was 79.16%. SEM showed changes in the buccal capsule and cuticular damage. It was concluded that R-carvone nanoemulsions showed antiparasitic action demonstrating promise for the control of infections caused by gastrointestinal nematodes in small ruminants.
这项工作旨在评估香芹酮纳米乳液对 的驱虫效果。制备了三种 R-香芹酮纳米乳液:在超声处理器中均质的未包被 R-香芹酮纳米乳液(UNAlg-son)和在超高压匀质机中均质的 R-香芹酮纳米乳液(UNAlg-ultra)以及海藻酸钠包被的 R-香芹酮纳米乳液(CNAlg-ultra)。对纳米乳液进行了理化特性分析。采用卵孵化试验(EHT)、幼虫发育试验(LDT)和成虫运动试验(AWMT)评估驱虫活性。用扫描电子显微镜(SEM)评估对成虫表皮的影响。结果进行方差分析,并使用 Tukey 检验进行比较( < 0.05)。计算抑制 50%卵孵化和幼虫发育的有效浓度(EC)。粒径分别为 281.1nm(UNAlg-son)、152.7nm(UNAlg-ultra)和 557.8nm(CNAlg-ultra),Zeta 电位分别为-15mV(UNAlg-son)、-10.8mV(UNAlg-ultra)和-24.2mV(CNAlg-ultra)。包封效率为 99.84±0.01%。纳米乳液的 SEM 显示粒径增大。在 EHT 中,UNAlg-son、UNAlg-ultra 和 CNAlg-ultra 的 EC 值分别为 0.19、0.02 和 0.17mg/mL。在 LDT 中,UNAlg-son、UNAlg-ultra 和 CNAlg-ultra 的 EC 值分别为 0.29、0.31 和 0.95mg/mL。暴露于 UNAlg-ultra 和 CNAlg-ultra 12 小时后,成虫运动抑制率达到 100%,而 UNAlg-son 的成虫运动抑制率为 79.16%。SEM 显示口囊和表皮损伤发生变化。综上所述,香芹酮纳米乳液具有驱虫作用,有望控制小反刍动物胃肠道线虫感染。