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1.
Braz. J. Pharm. Sci. (Online) ; 59: e21343, 2023. tab, graf
Article de Anglais | LILACS | ID: biblio-1439516

RÉSUMÉ

Abstract Voriconazole increases tacrolimus blood concentration significantly when coadministrated. The recommendation of reducing tacrolimus to 1/3 in voriconazole package insert seems not to be satisfactory in clinical practice. In vitro studies demonstrated that the magnitude of inhibition depends on the concentration of voriconazole, while voriconazole exposure is determined by the genotype status of CYP2C19. CYP2C19 gene polymorphism challenges the management of drug-drug interactions(DDIs) between voriconazole and tacrolimus. This work aimed to predict the impact of CYP2C19 polymorphism on the DDIs by using physiologically based pharmacokinetics (PBPK) models. The precision of the developed voriconazole and tacrolimus models was reasonable by evaluating the pharmacokinetic parameters fold error, such as AUC0-24, Cmax and tmax. Voriconazole increased tacrolimus concentration immediately in all population. The simulated duration of DDIs disappearance after voriconazole withdrawal were 146h, 90h and 66h in poor metabolizers (PMs), intermediate metabolizers (IMs) and extensive metabolizers(EMs), respectively. The developed and optimized PBPK models in this study can be applied to assit the dose adjustment for tacrolimus with and without voriconazole.


Sujet(s)
Tacrolimus/agonistes , Facteur d'Impact , Voriconazole/agonistes , Cytochrome P-450 CYP2C19/analyse , Techniques in vitro/méthodes , Préparations pharmaceutiques/administration et posologie , Adaptation psychologique/classification
2.
Ecotoxicol Environ Saf ; 120: 449-56, 2015 Oct.
Article de Anglais | MEDLINE | ID: mdl-26150137

RÉSUMÉ

Rough rice grains are often stored for extended periods before they are used or consumed. However, during storage, the rough rice is vulnerable to insect infestation, resulting in significant economic loss. Previous studies have shown that volatiles cues, physical characteristics, and taste chemicals on the grains could be the important key behavior factors for storage insect pests to locate the hosts and select oviposition sites. It is also well known that the transgenic Bt rough rice line T1C-19, which expresses a cry1C(⁎) gene has a high resistance to Lepidoptera pests. However, there were no evidences to show the consequences of host preference for non-target insect pests after growing Bt transgenic rice. In this study, the potential key factors of Bt rough rice were investigated for their impacts on the behaviors of non-target pest lesser grain borer Rhyzopertha dominica, the main weevil pest of grain and its parasitic wasps Anisopteromalus calandrae, the natural enemy of the beetle. Both electronic nose and electronic tongue analyses showed that the parameters of Bt rough rice were analogous to those of the non-Bt rough rice. The volatile profiles of Bt and non-Bt rough rice examined by gas chromatographic mass spectrometry (GC-MS) were similar. For most volatile compounds, there were no significantly quantitative differences in compound quantities between Bt and non-Bt rough rice. The densities of sclereids and trichomes on the rough rice husk surface were statistically equal in Bt and non-Bt rough rice. The non-target pest, R. dominica, and its parasitoid wasp, A. calandrae, were attracted to both rough rice and could not distinguish the transgenic T1C-19 from the isogenic rough rice. These results demonstrated that Bt rough rice has no negative impacts on the host preference behaviors of non-target stored product pest R. dominica and its parasitoid A. calandrae.


Sujet(s)
Coléoptères/métabolisme , Régulation de l'expression des gènes végétaux , Oryza/génétique , Oryza/parasitologie , Protéines végétales/génétique , Guêpes/métabolisme , Animaux , Dosage biologique , Contamination des aliments/analyse , Parasitologie alimentaire , Stockage des aliments , Chromatographie gazeuse-spectrométrie de masse , Olfactométrie , Oviposition/physiologie , Lutte biologique contre les nuisibles/méthodes , Protéines végétales/métabolisme , Végétaux génétiquement modifiés/génétique , Analyse en composantes principales , Trichomes/parasitologie , Composés organiques volatils/analyse
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