Bioactive-based spray and spot-on formulations: Development, characterization and in vitro efficacy against fleas and ticks.

IF 1.4 4区 医学 Q3 PARASITOLOGY Experimental parasitology Pub Date : 2024-12-18 DOI:10.1016/j.exppara.2024.108881
Ingrid Lins Raquel de Jesus, Fernando Rocha Miranda, Thais Paes Ferreira, Alice Ortega do Nascimento, Karen Kuhfuss da Silva de Lima, Bárbara Rauta de Avelar, Diefrey Ribeiro Campos, Yara Peluso Cid
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Abstract

The flea Ctenocephalides felis felis and the tick Rhipicephalus sanguineus are ectoparasites of great importance in veterinary medicine that can affect pets, also impacting the lives of owners due to the possible transmission of zoonoses. Due to the negative impact on animals, owners and the environment, synthetic chemicals are being replaced by natural alternatives. Eugenol and carvacrol stand out as bioactive substances with potential antiparasitic activity. The aim of the present study was to develop and characterize physicochemically spray and spot-on formulations containing bioactives alone and in combination and to evaluate their ectoparasiticidal activity through in vitro bioassays of the knockdown effect and residual efficacy against adult fleas and ticks. Regarding flea knockdown, spot-on formulations achieved maximum mortality in a shorter period than spray formulations, 2 h for carvacrol plus eugenol (SCE) and 4 h for carvacrol (SC) and eugenol (SE) alone, compared to 15, 30 and 45 min for the spot-on formulations of carvacrol (PC), both substances together (PCE) and eugenol alone (PE), respectively. For tick control, the formulations required longer exposure times than for fleas, so that 100% control took 6 h for PCE, followed by 12 h for SCE and PE, and 24 h for PC, SC and PE. Regarding residual efficacy against fleas, the spray and spot-on formulations remained active for approximately 90 and 45 days, respectively. In general, formulations containing associated bioactives had a faster knockdown effect than formulations with only one in their composition, indicating a synergistic effect of the two bioactive substances against fleas and ticks.

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基于生物活性的喷雾和定点制剂:开发,表征和对跳蚤和蜱的体外功效。
猫头蚤(Ctenocephalides felis felis)和血头蜱(Rhipicephalus sanguineus)是兽医学上非常重要的体外寄生虫,它们会影响宠物,也会因可能传播人畜共患病而影响主人的生活。由于对动物、主人和环境的负面影响,合成化学品正在被天然替代品所取代。丁香酚和香芹酚是具有潜在抗寄生虫活性的生物活性物质。本研究的目的是开发和表征含有单独和联合生物活性的物理化学喷雾和斑点制剂,并通过体外生物测定对成年跳蚤和蜱的击倒效果和残留功效来评估它们的体外杀虫活性。在灭蚤方面,与喷雾制剂相比,喷涂制剂在更短的时间内达到最大死亡率,香芹酚加丁香酚(SCE)为2小时,香芹酚(SC)和丁香酚(SE)单独为4小时,而香芹酚(PC)、两种物质一起(PCE)和单独丁香酚(PE)分别为15、30和45分钟。对于蜱虫的控制,制剂需要比跳蚤更长的暴露时间,因此PCE需要6小时才能达到100%的控制,其次是SCE和PE 12小时,PC、SC和PE 24小时。至于对跳蚤的残余功效,喷雾和定点制剂分别保持约90天和45天的有效。一般来说,含有相关生物活性物质的制剂比仅含有一种生物活性物质的制剂具有更快的抑制作用,这表明两种生物活性物质对跳蚤和蜱具有协同作用。
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来源期刊
Experimental parasitology
Experimental parasitology 医学-寄生虫学
CiteScore
3.10
自引率
4.80%
发文量
160
审稿时长
3 months
期刊介绍: Experimental Parasitology emphasizes modern approaches to parasitology, including molecular biology and immunology. The journal features original research papers on the physiological, metabolic, immunologic, biochemical, nutritional, and chemotherapeutic aspects of parasites and host-parasite relationships.
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