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Augmented Bioavailability of Felodipine Through an α-linolenic Acid-based Microemulsion

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Publisher Springer
Specialty Pharmacology
Date 2017 Dec 6
PMID 29204927
Citations 3
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Abstract

The oral bioavailability of felodipine, a dihydropyridine calcium channel antagonist, is about 15%. This may be due to poor water solubility, and a lower intestinal permeability than a BCS class I drug, and hepatic first-pass metabolism of the drug. Many drugs are unpopular due to solubility issues. The goal of this study was to develop and optimize a felodipine-containing microemulsion to improve the intestinal permeability and bioavailability of the drug. The felodipine microemulsions were developed with the selected components, i.e., α-linolenic acid as the oil phase, Tween 80 as a surfactant, and isopropyl alcohol as co-surfactant using Box-Behnken design and characterized for in vitro release and particle size. The optimized felodipine-loaded microemulsion was investigated for physicochemical interaction, surface morphology, intestinal permeability, rheology, cytotoxicity, cellular uptake, pharmacodynamic (electrocardiogram and heart rate variability), and pharmacokinetic studies to explore its suitability as a promising oral drug delivery system for the treatment of hypertension. The optimized felodipine-loaded microemulsion showed significantly higher (P < 0.05) apparent permeability coefficients (Papp) at 7.918 × 10 cm/s after 1 h, when compared with conventional formulations that are marketed tablet, drug oily solution, and drug emulsion, which showed a maximum Papp of 3.013, 4.428, and 5.335 × 10 cm/s, respectively. The optimized felodipine-loaded microemulsion showed biocompatibility and no cytotoxicity. Cellular uptake studies confirmed payload delivery to a cellular site on the J774.A1 cell line. The rheology study of the optimized felodipine-loaded microemulsion revealed Newtonian-type flow behavior and discontinuous microemulsion formation. In pharmacodynamic studies, significant differences in parameters were observed between the optimized felodipine-loaded microemulsion and marketed formulation. The optimized felodipine-loaded microemulsion showed significantly higher (p < 0.01) C (7.12 ± 1.04 μg/ml) than marketed tablets (2.44 ± 1.03 μg/ml). It was found that AUC obtained from the optimized felodipine-loaded microemulsion (84.53 ± 10.73 μg h/ml) was significantly higher (p < 0.01) than the marketed tablet (27.41 ± 5.54 μg h/ml). The relative bioavailability (Fr) of the optimized felodipine-loaded microemulsion was about 308.3% higher than that of the marketed formulation. The results demonstrate that the prepared microemulsion is an advanced and efficient oral delivery system of felodipine for the management of hypertension.

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References
1.
Saltiel E, Ellrodt A, Monk J, Langley M . Felodipine. A review of its pharmacodynamic and pharmacokinetic properties, and therapeutic use in hypertension. Drugs. 1988; 36(4):387-428. DOI: 10.2165/00003495-198836040-00002. View

2.
Patil P, Biradar S, Paradkar A . Extended release felodipine self-nanoemulsifying system. AAPS PharmSciTech. 2009; 10(2):515-23. PMC: 2690798. DOI: 10.1208/s12249-009-9235-0. View

3.
Blychert E, Wingstrand K, Edgar B, Lidman K . Plasma concentration profiles and antihypertensive effect of conventional and extended-release felodipine tablets. Br J Clin Pharmacol. 1990; 29(1):39-45. PMC: 1380059. DOI: 10.1111/j.1365-2125.1990.tb03600.x. View

4.
Kim E, Chun M, Jang J, Lee I, Lee K, Choi H . Preparation of a solid dispersion of felodipine using a solvent wetting method. Eur J Pharm Biopharm. 2006; 64(2):200-5. DOI: 10.1016/j.ejpb.2006.04.001. View

5.
Han S, Yao T, Zhang X, Gan L, Zhu C, Yu H . Lipid-based formulations to enhance oral bioavailability of the poorly water-soluble drug anethol trithione: effects of lipid composition and formulation. Int J Pharm. 2009; 379(1):18-24. DOI: 10.1016/j.ijpharm.2009.06.001. View