Larvicidal formulation containing N-tosylindole: A viable alternative to chemical control of Aedes aegypti

Aedes aegypti is currently a major public health problem. This mosquito is responsible for the spread of infectious diseases that have been causing epidemics worldwide. Surfactant-stabilized systems, such as microemulsions, liquid-crystalline precursors and liquid crystals, are promising sustained d...

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Veröffentlicht in:Colloids and surfaces, B, Biointerfaces B, Biointerfaces, 2022-05, Vol.213, p.112380-112380, Article 112380
Hauptverfasser: de Jesus Santos, Adriana, Macêdo, Nathália Araújo, de Holanda Cavalcanti, Sócrates Cabral, Sarmento, Victor Hugo Vitorino, Moreira Lira, Ana Amélia, dos Santos, Cochiran Pereira, La Corte Santos, Roseli, Souza Nunes, Rogéria de
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Sprache:eng
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Zusammenfassung:Aedes aegypti is currently a major public health problem. This mosquito is responsible for the spread of infectious diseases that have been causing epidemics worldwide. Surfactant-stabilized systems, such as microemulsions, liquid-crystalline precursors and liquid crystals, are promising sustained delivery formulations of hydrophilic and hydrophobic substances. These systems are biocompatible water-soluble reservoirs for N-tosylindole exhibiting biological activity against Aedes aegypti Linn. (Diptera: Culicidae) larvae. The ternary diagram displayed four regions: microemulsion (ME), liquid crystal (LC), emulsion (EM) and phase separation (PS). PLM and SAXS distinguished microemulsions, lamellar and hexagonal phase liquid crystals. The system had a lethal concentration of 50% (LC50 = 0.1 ppm, 0.36 µM) lower than pure N-tosylindole (0.24 ppm, 0.88 µM), which has limitations in aqueous media. Furthermore, the formulation displayed no toxicity to Artemia sp., a non-target organism. The system exhibited excellent larvicidal activity as an alternative to commercial larvicides that have shown resistance and toxicity to the environment by Ae. aegypti larvae due to prolonged use. In addition, a two-fold increase in potency was observed. [Display omitted] •The surfactant PPG-5-CETETH-20 enabled the formation of several structures.•More organized systems were formed with the increase of the aqueous phase.•The system showed no toxicity to non-target organisms (Artemia salina).•The systems present themselves as a viable alternative for the control of Ae. aegypti.
ISSN:0927-7765
1873-4367
DOI:10.1016/j.colsurfb.2022.112380