Valentim D S S, Duarte J L, Oliveira A E M F M, Cruz R A S, Carvalho J C T, Conceição E C, Fernandes C P, Tavares-Dias M
Postgraduate Program on Tropical Biodiversity (PPGBIO), Federal University of Amapá (UNIFAP), Macapá, AP, Brazil.
Phytopharmaceutical Nanobiotechnology Laboratory, Federal University of Amapá, Macapá, Brazil.
J Fish Dis. 2018 Mar;41(3):443-449. doi: 10.1111/jfd.12739. Epub 2017 Dec 1.
Outbreaks of diseases pose a major threat to sustainable aquaculture development worldwide. Application of herbal products to combat parasitic diseases provides an alternative approach for sustainable aquaculture. This study investigated the in vitro antiparasitic effects of an oil-in-water nanoemulsion prepared using the essential oil from Pterodon emarginatus, against monogeneans infesting Colossoma macropomum. Gill arches from C. macropomum (47.6 ± 14.5 g and 13.5 ± 1.4 cm) that were naturally parasitized by Anacanthorus spathulatus, Notozothecium janauachensis and Mymarothecium boegeri were immersed in different dispersions of the P. emarginatus nanoemulsions (0, 50, 100, 200, 400 and 600 mg/L). The major compounds presented in the essential oil of P. emarginatus were β-elemene, β-caryophyllene and α-humulene. Characterization of these nanoemulsions showed that they have a small mean droplet size and low polydispersity index, which is concordant with stable systems. In this in vitro trial, the P. emarginatus nanoemulsion concentrations of 100, 200, 400 and 600 mg/L presented 100% helminthic efficacy against monogeneans of the gills of C. macropomum. The highest two concentrations used (400 and 600 mg/L) were seen to immobilize the parasites after only 15 min. Therefore, it would be worthwhile testing these concentrations in therapeutic baths against monogeneans of C. macropomum.
疾病爆发对全球可持续水产养殖发展构成重大威胁。应用草药产品防治寄生虫病为可持续水产养殖提供了一种替代方法。本研究调查了用翼柄豆精油制备的水包油纳米乳液对感染巨脂鲤鳃部的单殖吸虫的体外抗寄生虫作用。将自然感染了匙状无棘吸虫、雅瑙阿克森无盾吸虫和博氏拟密杯吸虫的巨脂鲤(体重47.6±14.5克,体长13.5±1.4厘米)的鳃弓浸入不同浓度(0、50、100、200、400和600毫克/升)的翼柄豆纳米乳液分散液中。翼柄豆精油中的主要成分是β-榄香烯、β-石竹烯和α-葎草烯。这些纳米乳液的表征显示它们具有较小的平均液滴尺寸和较低的多分散指数,这与稳定体系一致。在该体外试验中,100、200、400和600毫克/升的翼柄豆纳米乳液浓度对巨脂鲤鳃部的单殖吸虫显示出100%的驱虫效果。所用的最高两个浓度(400和600毫克/升)在仅15分钟后就使寄生虫固定。因此,值得在治疗浴中测试这些浓度对巨脂鲤单殖吸虫的效果。