Controlling Rhipicephalus microplus is currently one of the main challenges in livestock farming due to the significant economic losses it causes. Traditionally, managing this parasite has been based on the use of synthetic ixodicides, among which fipronil has proven to be highly effective. However, its low water solubility and the limitations of commercially available formulations can affect the bioavailability of this compound, favoring the emergence of resistance in tick populations. In this context, fipronil-loaded nanoparticles were developed using the Eudragit® E PO polymer (NP_F) (Helm, Naucalpan, Mexico, Mexico), which were physicochemically characterized and evaluated against fipronil-susceptible R. microplus larvae. NP_F had an average size of 143.43 ± 1.88 nm, a polydispersity index (PDI) of 0.162 ± 0.01, a ζ (P ζ) of 21.16 ± 0.54, an encapsulation percentage (%E) of 7.36 ± 0.30, and an encapsulation efficiency percentage (%EE) of 66.28 ± 3.5%. Free fipronil showed an LC50 of 0.582 µg/mL and an LC90 of 2.503 µg/mL against R. microplus. The NP_F formulation showed an LC50 of 0.427 µg/mL and an LC90 of 2.092 µg/mL. These results suggest that incorporating fipronil into nanoparticles improves its ixodicide efficacy, positioning it as an innovative and promising alternative for the development of effective tick control formulations.
In Vitro Larvicidal Efficacy of a Fipronil-Based Nanoixodicide Against Rhipicephalus microplus
J. P. Villarreal-Villarreal,José Noel García-Pérez,J. J. Hernández Escareño,S. A. Galindo Rodríguez,M. S. Heya,Gustavo Hernández Vidal,R. García-Ponce
Published 2025 in Tropical Medicine and Infectious Disease
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- Publication year
2025
- Venue
Tropical Medicine and Infectious Disease
- Publication date
2025-10-01
- Fields of study
Biology, Medicine, Environmental Science
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Semantic Scholar, PubMed
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