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Castillo-Morales, R. M.

Publications and source records attributed to Castillo-Morales, R. M..

2 recordsLinked to original sources

Electroantennographic and behavioral responses of Rhodnius prolixus (Stal 1872) to xenobiotics reveal carvone and IR3535 as potential repellent candidates

Electroantennography (EAG) is a valuable approach for monitoring the sensory responses of insects to insecticidal and repellent molecules and an effective tool for early screening of compounds aimed at controlling and protecting against medically important insect vectors. However, its predictive potential for repellent efficacy in triatomine vectors remains poorly explored. The objective of this study was to evaluate the EAG responses to different xenobiotics as a preliminary selection strategy for compounds with potential repellent action against triatomines. For this purpose, the antennae of adult triatomines subjected to prolonged fasting ([≥]30 days) were exposed to repellent molecules. In parallel, repellency bioassays were conducted using a live bait (Gallus gallus) and a newly designed laboratory device to validate the electroantennographic results. EAG recordings showed a significant reduction in olfactory capacity of> 60% in response to the chemical compounds IR3535 and carvone, consistent with the protection times observed in the repellency tests (135.6 {+/-} 43.29 min and 108 {+/-} 26.33 min, respectively). In conclusion, the compounds with the highest repellent activity were clearly discriminated by the insects olfactory system, a finding corroborated by the decrease in electrical signals recorded in the EAG bioassays.

animal behavior and cognition↗

Baseline bioenergetic profile of mitochondria and permeabilized tissue of Aedes aegypti (Diptera: Culicidae) throughout its life cycle

Cellular respiration parameters provide information on the energy metabolism of an organism under physiological or non-conditions and can be determined by isolating mitochondria or even using their permeabilized tissue. The present study aimed to describe the mitochondrial activity of Ae. aegypti throughout its life cycle. For this purpose, we isolated mitochondria and permeabilized tissue (1 and 5 individuals) from larvae (L4), pupae, and adults (female thorax) to estimate oxygen consumption using different oxidizable substrates (glutamate, malate, proline + pyruvate, succinate, and glycerol-3-phosphate). The Respiratory Control Coefficient (RCC) was calculated, and the specific enzyme activity of the Electron Transport Chain (ETC) was quantified. The highest values of oxygen consumption (state 3) were obtained when succinate was used as the oxidizable substrate in all developmental stages of Ae. aegypti, with a progressive increase in the values recorded from larva (isolated mitochondria: 30.3 {+/-} 5.0 pmol/(s*mL), permeabilized tissue/ 5 individuals: 48.8{+/-}1.8 pmol/(s*mL)), through pupa (isolated mitochondria: 42.8{+/-}3.6 pmol/(s*mL); permeabilized tissue/5 individuals: 47.4{+/-}2.2 pmol/(s*mL)), through adult (isolated mitochondria: 53.4{+/-}6.0 pmol/(s*mL); permeabilized tissue/5 thorax: 27.4{+/-}2.4 pmol/(s*mL)). These results are congruent with the values obtained for enzyme activity, with higher activity of succinate oxidase and succinate dehydrogenase enzymes (Complex II). The CCR values for isolated mitochondria and permeabilized tissue ranged from 1 to 1.8. The results allow us to conclude that there are changes in mitochondrial respiration throughout the life cycle of the Ae. aegypti mosquito.

biochemistry↗