Duarte Jonatas Lobato, Di Filippo Leonardo Delello, Ribeiro Tais de Cássia, Silva Ana Carolina de Jesus, Hage-Melim Lorane Izabel da Silva, Duchon Stéphane, Carrasco David, Pinto Mara Cristina, Corbel Vincent, Chorilli Marlus
Department of Drugs and Medicines, School of Pharmaceutical Sciences, São Paulo State University (UNESP), Araraquara 14800-903, São Paulo, Brazil.
Departamento de Ciências Biológicas e da Saúde, Universidade Federal do Amapá, Macapá 68903-419, Amapá, Brazil.
Pharmaceutics. 2024 Aug 21;16(8):1096. doi: 10.3390/pharmaceutics16081096.
Aedes mosquito-borne diseases remain a significant global health threat, necessitating effective control strategies. This study introduces monoterpenes-based nanohydrogels for potential use as repellents against , the primary dengue vector worldwide. We formulated hydrogels using cymene- and myrcene-based nanoemulsions with different polymers: chitosan, carboxymethylcellulose (CMC), and carbopol. Our evaluations of rheological, texture, and bioadhesive properties identified CMC hydrogel as the most promising gelling agent for topical application, exhibiting sustained monoterpene release over 12 h with low skin permeation and high retention in the stratum corneum. Myrcene-loaded CMC hydrogel achieved a 57% feeding deterrence compared to 47% with cymene hydrogel in the mosquito membrane-feeding model. Molecular docking studies revealed interactions between myrcene and an essential amino acid (Ile116) in the odorant-binding protein 22 (AeOBP22), corroborating its higher repellent efficacy. These findings suggest that myrcene-loaded CMC hydrogels offer a promising, minimally invasive strategy for personal protection against and warrant further investigation to optimize monoterpene concentrations for vector control.
伊蚊传播的疾病仍然是全球重大的健康威胁,因此需要有效的控制策略。本研究介绍了基于单萜的纳米水凝胶,其有可能用作针对全球主要登革热媒介——埃及伊蚊的驱避剂。我们使用基于对异丙基苯和月桂烯的纳米乳液与不同聚合物(壳聚糖、羧甲基纤维素(CMC)和卡波姆)配制了水凝胶。我们对流变学、质地和生物粘附特性的评估确定,CMC水凝胶是最有前景的用于局部应用的胶凝剂,其单萜释放持续超过12小时,皮肤渗透率低且在角质层中的保留率高。在蚊虫膜饲模型中,负载月桂烯的CMC水凝胶实现了57%的摄食威慑,而负载对异丙基苯的水凝胶为47%。分子对接研究揭示了月桂烯与气味结合蛋白22(AeOBP)中的一种必需氨基酸(Ile116)之间的相互作用,证实了其更高的驱避效果。这些发现表明,负载月桂烯的CMC水凝胶为个人防护埃及伊蚊提供了一种有前景的、微创策略,并且有必要进一步研究以优化用于病媒控制的单萜浓度。