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Bermejo-Nogales, A.

Publications and source records attributed to Bermejo-Nogales, A..

2 recordsLinked to original sources

Computational ligands to VKORC1s and CYPs. Could they predict new anticoagulant rodenticides?

Anticoagulant-resistance in rodents and anticoagulant off-target effects are some of the world-wide problems of increasing concern. To search for new anticoagulant rodenticide candidates we have computationally explored some of the rat genes previously implicated in resistance to actual anticoagulants. In particular, we searched among hundreds of anticoagulant-similar chemotypes those binding rat wild-type VKORC1 (the best-known anticoagulant target, a Vitamin K-recycling enzyme), VKORC1L1 (a VKORC1-related enzyme), Cytochrome P450 CYP enzymes (some of the most important enzymes implicated in detoxification) and anticoagulant-resistant VKORC1-mutants (to minimize propensity to resistance). Results predicted new VKORC1 leads with binding-scores in the low nM range (high binding-affinities) predicting hydroxycoumarin- and naphtoquinone-like chemotypes. We then selected top-leads with additional high binding-scores to more than three anticoagulant-related CYPs, suggesting minimal detoxification rates and therefore maximal anticoagulation expectatives. A downsized list of top top-leads maintaining VKORC1 low-binding scores to anticoagulant resistant mutants, was finally proposed for experimental validation. The combination of different rat targets for computational studies, could be used to search for unrelated chemotypes, for reduction of off-target environmental anticoagulant impacts, and/or as new tools to explore anticoagulant molecular mechanisms.

pharmacology and toxicology

Pest control strategies after first signs of invasive black rat: case study in the Community of Madrid

Rodents are animals that provoke special concern in the rural and urban areas as may cause potential damage in facilities and infrastructures as well as social alarm. The control of rodent populations is based on prevention and on what it has been called an "Integrated Pest Management" strategy. The most important species affected by this strategy are brown rat (Rattus norvegicus), black rat (Rattus rattus L.) and mouse (Mus musculus). In the present work, our original objective was to monitor changes in status or range of rodent species in the Community of Madrid (Spain). We conducted in coordination with the professional organization of Pest Control Operators "ANECPLA" a procedure designed to obtain faecal samples in locations with rodenticide treatment. Determination of pest specie was based on cytochrome b (cytb) sequences and phylogenetic analysis. We received samples from a variety of locations in which a rodenticide treatment was applied due to infestation or to citizen notice. While we recorded a number of data about the distribution of brown rat the presence of black rat was unexpectedly discovered. The detection of this species implies changes in pest control strategies to improve the results in the application of rodenticides available in the market. Key MessageRodent pest control is a key issue but little is known about Spanish populations. We aimed to know how many rat species there are in Central Spain, specifically in the Community of Madrid. We found for the first time the presence of black rat and a new wild strain of brown rat in this area. These findings have change the strategies of rodent treatment and stresses the importance of population studies for a better control.

zoology