Furtado William Eduardo, Cardoso Lucas, de Medeiros Paula Brando, Lehmann Nicollas Breda, de Aguiar Bertaglia Elisabeth, da Costa Marchiori Natalia, Bertoldi Fabiano Cleber, Martins Maurício Laterça
AQUOS - Aquatic Organisms Health Laboratory, Aquaculture Department, Federal University of Santa Catarina (UFSC), Rod. Admar Gonzaga 1346, Florianópolis, SC 88040-900 Brazil.
Department of Infectious Diseases and Public Health, Jockey Club College of Veterinary Medicine and Life Sciences, City University of Hong Kong, Kowloon, Hong Kong.
J Parasit Dis. 2021 Dec;45(4):1096-1105. doi: 10.1007/s12639-021-01400-2. Epub 2021 Jun 5.
This study evaluated the potential of alternative treatments against larval stages of . For in vitro test, the nanoemulsified oils of sp. acicule and oleoresin were evaluated, along with Biogermex® (commercial product based on citrus biomass). For this, the motility of five larvae of the same stage (nauplii or copepodite) were evaluated in a 96-well microplate. Using the best results, on the in vivo test, fries of were submitted to a long-term immersion bath (96 h) containing different concentrations of the product diluted directly in the water. It was possible to notice the antiparasitic potential of the oleoresin and the acicule of sp., as well as the citrus biomass extract against the parasites. The nanoemulsified oils successfully inhibited the development of nauplii (10 mg L in 24 h) and the fries showed to be tolerant to the presence of the compound (LC 96 h-16.74 mg L). The concentration of 30.5 mg L of Biogermex® eliminated the copepodites within 24 h, being more efficient than sp. when tested at the same stage, at the times analyzed. The results obtained indicate a potential use of these compounds as prophylactic agents against .
本研究评估了替代疗法针对[寄生虫名称未给出]幼虫阶段的潜力。对于体外试验,评估了刺[物种名称未给出]的纳米乳化油和油树脂,以及Biogermex®(基于柑橘生物质的商业产品)。为此,在96孔微孔板中评估了同一阶段的五只幼虫(无节幼体或桡足幼体)的活力。利用最佳结果,在体内试验中,将[鱼的种类未给出]的鱼苗置于含有直接在水中稀释的不同浓度产品的长期浸泡浴中(96小时)。可以注意到油树脂、刺[物种名称未给出]以及柑橘生物质提取物对寄生虫的抗寄生虫潜力。纳米乳化油成功抑制了无节幼体的发育(24小时内10毫克/升),并且鱼苗显示出对该化合物的耐受性(96小时半数致死浓度-16.74毫克/升)。30.5毫克/升的Biogermex®在24小时内消除了桡足幼体,在分析的时间点上,与同一阶段测试的[物种名称未给出]相比更有效。获得的结果表明这些化合物作为针对[寄生虫名称未给出]的预防剂具有潜在用途。