Department of Biological Sciences, School of Pharmaceutical Sciences, São Paulo State University (UNESP), Rodovia Araraquara-Jaú, km 1, Araraquara, São Paulo, 14800-903, Brazil.
Department of Drugs and Medicines, School of Pharmaceutical Sciences, São Paulo State University (UNESP), Rodovia Araraquara-Jaú, km 1, Araraquara, São Paulo, 14800-903, Brazil.
Parasit Vectors. 2023 Aug 29;16(1):303. doi: 10.1186/s13071-023-05931-w.
The successful use of semiochemicals to attract insects to traps is based on research on the most suitable compounds and their release profiles over time. Based on the group's promising results, matrices with a more adequate release profile and more eco-friendly properties for the release of 1-hexanol were developed. To use a more suitable prototype in the field, the most promising systems were added to a capsule and evaluated in a wind tunnel. Behavioral experiments were performed using the sand fly species, Lutzomyia longipalpis, to evaluate the efficacy of the proposed system.
Different delivery systems were developed by varying the polymer (gellan gum and pectin) ratio, crosslinker (aluminum chloride) concentration, and glutaraldehyde removal.The delivery systems were loaded with 1-hexanol, and their release profiles were evaluated using gravimetric analysis under ambient and high-humidity conditions. When the matrix system was placed inside a plastic container, modulations in the active release profile were observed and the system could be reused. Actid attraction behaviors of the sand fly species, Lu. longipalpis, were evaluated in a wind tunnel when exposed to 1-hexanol-loaded release systems at different times.
Among the four formulations evaluated, System 2 (gellan gum and pectin in a 1:1 ratio with 5% aluminum chloride) exhibited the most promising release profile, with greater uniformity and longer compound release time. The maximum 1-hexanol release uniformity was achieved over a longer time, mainly every 24 h, under both ambient and high-humidity conditions. System 2 can be reused at least once with the same structure. The wind tunnel trials exhibited efficient activation and attraction of Lu. longipalpis to 1-hexanol after 24, 48, and 72 h in System 2 placed inside the capsules.
The polymeric matrix supplemented with 1-hexanol and introduced in plastic capsules showed promising results in attracting sand flies. This system can be used as a solution for other attractive compounds as well as in other applications where their release needs to be controlled or prolonged.
利用信息素引诱昆虫进入诱捕器的成功应用,基于对最适宜化合物及其随时间释放情况的研究。基于该小组的有希望的结果,开发了具有更合适释放特性和更环保特性的基质,以释放 1-己醇。为了在现场使用更合适的原型,将最有希望的系统添加到胶囊中,并在风洞中进行评估。使用沙蝇物种(Lutzomyia longipalpis)进行行为实验,以评估所提出系统的功效。
通过改变聚合物(结冷胶和果胶)的比例、交联剂(氯化铝)的浓度和戊二醛的去除率,开发了不同的输送系统。将输送系统装入 1-己醇,并在环境和高湿度条件下通过重量分析评估其释放特性。当基质系统放置在塑料容器内时,观察到主动释放特性的调制,并且该系统可以重复使用。在风洞中,当暴露于装有不同时间 1-己醇释放系统的沙蝇物种 Lu. longipalpis 时,评估了其活性吸引行为。
在所评估的四种配方中,配方 2(结冷胶和果胶比例为 1:1,并用 5%的氯化铝交联)表现出最有希望的释放特性,具有更大的均匀性和更长的化合物释放时间。在环境和高湿度条件下,最大的 1-己醇释放均匀性在更长的时间内实现,主要是每 24 小时一次。配方 2 可以至少重复使用一次,具有相同的结构。风洞试验表明,在装有胶囊的系统 2 中放置 24、48 和 72 小时后,1-己醇能有效激活和吸引 Lu. longipalpis。
补充有 1-己醇并引入塑料胶囊的聚合物基质在吸引沙蝇方面显示出有希望的结果。该系统可用于其他有吸引力的化合物,以及其他需要控制或延长释放的应用。