6533b7d0fe1ef96bd1259b8b
RESEARCH PRODUCT
Development of an ion-pair to improve the colon permeability of a low permeability drug: Atenolol.
Isabel González-álvarezMatilde Merino-sanjuánIsabel Lozoya-agulloMarival BermejoMarta González-álvarezsubject
DrugMaleColonmedia_common.quotation_subjectPharmaceutical ScienceBromophenol blue02 engineering and technology030226 pharmacology & pharmacyPermeability03 medical and health scienceschemistry.chemical_compound0302 clinical medicinemedicineLow permeabilityAnimalsRats WistarColoring Agentsmedia_commonchemistry.chemical_classificationChromatographyBenzenesulfonates021001 nanoscience & nanotechnologyAtenololPermeability (earth sciences)MembranechemistryAtenololParacellular transportDelayed-Action PreparationsBromphenol BlueCounterion0210 nano-technologymedicine.drugdescription
Abstract To ensure the optimal performance of oral controlled release formulations, drug colon permeability is one of the critical parameters. Consequently developing this kind of formulations for low permeability molecules requires strategies to increase their ability to cross the colonic membrane. The objective of this work is to show if an ion-pair formation can improve the colon permeability of atenolol as a low permeability drug model. Two counter ions have been tested: brilliant blue and bromophenol blue. The Distribution coefficients at pH 7.00 (DpH7) of atenolol, atenolol + brilliant blue and atenolol + bromophenol blue were experimentally determined in n-octanol. Moreover, the colonic permeability was determined in rat colon using in situ closed loop perfusion method based in Doluisio's Technique. To check the potential effects of the counter ions on the membrane integrity, a histological assessment of colonic tissue was done. The results of the partitioning studies were inconclusive about ion-pair formation; nevertheless colon permeability was significantly increased by both counter ions (from 0.232 ± 0.021 cm/s to 0.508 ± 0.038 cm/s in the presence of brilliant blue and to 0.405 ± 0.044 cm/s in the presence of bromophenol blue). Neither damage on the membrane was observed on the histological studies, nor any change on paracellular permeability suggesting that the permeability enhancement could be attributed to the ion-pair formation.
year | journal | country | edition | language |
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2016-10-01 | European journal of pharmaceutical sciences : official journal of the European Federation for Pharmaceutical Sciences |