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Formulation of Sustained-release Tablets of Felodipine using Hydrophilic Polymers and Non-ionic Surfactants

친수성고분자 및 비이온성 계면활성제를 이용한 펠로디핀 서방정제의 설계

  • Published : 2006.08.21

Abstract

Felodipine, a calcium-antagonist of dihydropyridine type, is a poorly water soluble drug and has very low bioavailability. As preceding studies, use of solid dispersion systems and surfactants(solubilizers) has been suggested to increase dissolution and to improve bioavailability of felodipine. But in case of solid dispersion systems, large amount of toxic organic solvents should be used and manufacturing process time become longer than conventional process. In case of using surfactants, as time elapsed, decreasing of dissolution rate of felodipine due to crystallization has been reported. In this study, Copovidon as a hydrophilic polymer and $Transcutol^{\circledR}$ as a surfactant were combined to formulations if order to increase dissolution of felodipine and conventional wet granulation process were applied to manufacturing of formulations. The effect of Copovidon and $Transcutol^{\circledR}$ on the dissolution oi felodipine was investigated in-vitro. When Copovidon and $Transcutol^{\circledR}$ used simultaneously, the dissolution rate of felodipine was prominently increased compared with when used separately and the maximum increase in the dissolution of felodipine was 5.8 fold compared to control. This is most probably due to synergy effect by combination of Copovidon and $Transcutol^{\circledR}$. Felodipine sustained release tablets were successfully formulated using several grades of HPMC as a release retarding agent. The stability of felodipine sustained release tablet was evaluated after storage at accelerated condition($40^{\circ}C/75%\;RH$) for 6months in HDPE(High density polyethylene) bottle. Neither significant degradation nor change of dissolution rate for felodipine was observed after 6months. In conclusion, felodipine sustained release tablet was successfully formulated and dissolution of felodipine, poorly water soluble drug, was prominently increased and also stability was guaranteed by using combination system of hydrophilic polymer and surfactant.

Keywords

References

  1. E. Marianne, L. Jan-Erik and S. Mats, New pharmaceutical formulation, EUPO-Patent, 01113786 (2001)
  2. Y. S. Gil, S. C. Hong, C. H. Yu, H. J. Shin and J. S. Kim, Improvement of Dissolution rate of Felodipine Using Soild Dispersion and its Sustained Release Oral Dosage Form, J. Kor. Pharm. Sci., 32, 185-190 (2002)
  3. E. Karavas, E. Georgarakis, D. Bikiaris, T. Thomas, V. Katsos and A. Xenakis, Hydrophilic matrices as carriers in felodipine solid dispersion systems, Progr. Colloid. Polm. Sci., 118, 149-152 (2001) https://doi.org/10.1007/3-540-45725-9_34
  4. K. E. L. Falk, S. M. Hugosson, A. Rosinski and J. A. Sjogren, New pharmaceutical preparations with extended release, US-Patent, 4,803,081 (1989)
  5. U.S.P. 26 Monographs, Felodipine Extended-Release Tablets, U. S. Pharmacopeia, 1, supplement, 2961-2964 (2003)
  6. A. Moroni, A novel Copovidone binder for dry granulation and direct-compression tableting, Pharmaceutical Technology North America ; ABI/Inform Global, 8-12 (2001)
  7. W. Rocco, S. Laughlin, Solid pharmaceutical dispersions, US-patent, 5,837,714 (1998)
  8. T. Susana, M. L. Lópze, G. Torrado, F. Bolás, T. Santiago, R. Cadórniga, A novel formulation of albendazole solution: oral bioavailability and efficacy evaluation. Int. J. Pharm., 156, 181-187 (1997) https://doi.org/10.1016/S0378-5173(97)00204-4
  9. P. C. Sheen, Vinod K. Khetarpal and Colin E. Powlings, Formulation studies of a poorly warwe-soluble drug in soild dispersions to improve bioabailability, Int. J. Pharm., 118, 221-227 (1995) https://doi.org/10.1016/0378-5173(94)00366-D
  10. J. Y. Jung, S. D. Yoo and K. H. Lee, Enhanced solubility and dissolution rate of itraconazole by a soild dispersion technique, Int. J. Pharm., 187, 209-218 (1999) https://doi.org/10.1016/S0378-5173(99)00191-X
  11. Q. R. Cao, T. W. Kim, C. Y. Choi, K. A. Kwon and B. J. Lee, Preparation and dissolution of polyvinylpyrrolidone (PVP)-based soild dispersion systems containing solubilizers, J. Kor. Pharm. Sci., 33, 7-14 (2003)