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Journal Abstract Search


122 related items for PubMed ID: 12885387

  • 1. The application of the convective diffusion model and the film equilibrium model to surfactant-facilitated dissolution of gliclazide.
    Allaboun H, Alkhamis KA, AlMomani WY.
    Eur J Pharm Sci; 2003 Jul; 19(4):231-6. PubMed ID: 12885387
    [Abstract] [Full Text] [Related]

  • 2. Drug dissolution into micellar solutions: development of a convective diffusion model and comparison to the film equilibrium model with application to surfactant-facilitated dissolution of carbamazepine.
    Crison JR, Shah VP, Skelly JP, Amidon GL.
    J Pharm Sci; 1996 Sep; 85(9):1005-11. PubMed ID: 8877894
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  • 3. Surfactant-mediated dissolution: contributions of solubility enhancement and relatively low micelle diffusivity.
    Balakrishnan A, Rege BD, Amidon GL, Polli JE.
    J Pharm Sci; 2004 Aug; 93(8):2064-75. PubMed ID: 15236455
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  • 4. Dissolution of ionizable water-insoluble drugs: the combined effect of pH and surfactant.
    Jinno J, Oh Dm, Crison JR, Amidon GL.
    J Pharm Sci; 2000 Feb; 89(2):268-74. PubMed ID: 10688756
    [Abstract] [Full Text] [Related]

  • 5. Study of the solubilization of gliclazide by aqueous micellar solutions.
    Alkhamis KA, Allaboun H, Al-Momani WY.
    J Pharm Sci; 2003 Apr; 92(4):839-46. PubMed ID: 12661069
    [Abstract] [Full Text] [Related]

  • 6. A mechanistic study of griseofulvin dissolution into surfactant solutions under laminar flow conditions.
    Rao VM, Lin M, Larive CK, Southard MZ.
    J Pharm Sci; 1997 Oct; 86(10):1132-7. PubMed ID: 9344170
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  • 8. Dissolution rate enhancement of gliclazide by ordered mixing.
    Saharan VA, Choudhury PK.
    Acta Pharm; 2011 Sep 01; 61(3):323-34. PubMed ID: 21945911
    [Abstract] [Full Text] [Related]

  • 9. Effect of surfactant on dissolution of spherical particles in micellar systems.
    Allaboun H, Alkhamis KA, Al Jbour ND.
    Eur J Pharm Biopharm; 2007 Feb 01; 65(2):188-97. PubMed ID: 17027244
    [Abstract] [Full Text] [Related]

  • 10. Effect of surfactants on the solubility and intrinsic dissolution rate of sparfloxacin.
    Mbah CJ, Ozuo CO.
    Pharmazie; 2011 Mar 01; 66(3):192-4. PubMed ID: 21553649
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  • 13. Dissolution and solubility behavior of fenofibrate in sodium lauryl sulfate solutions.
    Granero GE, Ramachandran C, Amidon GL.
    Drug Dev Ind Pharm; 2005 Oct 01; 31(9):917-22. PubMed ID: 16306004
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  • 14. NMR study of the dynamics of cationic gemini surfactant 14-2-14 in mixed solutions with conventional surfactants.
    Jiang Y, Lu XY, Chen H, Mao SZ, Liu ML, Luo PY, Du YR.
    J Phys Chem B; 2009 Jun 18; 113(24):8357-61. PubMed ID: 19462938
    [Abstract] [Full Text] [Related]

  • 15. Incomplete Loading of Sodium Lauryl Sulfate and Fasted State Simulated Intestinal Fluid Micelles Within the Diffusion Layers of Dispersed Drug Particles During Dissolution.
    Galipeau K, Socki M, Socia A, Harmon PA.
    J Pharm Sci; 2018 Jan 18; 107(1):156-169. PubMed ID: 28625727
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  • 16. Solvation dynamics in aqueous anionic and cationic micelle solutions: sodium alkyl sulfate and alkyltrimethylammonium bromide.
    Tamoto Y, Segawa H, Shirota H.
    Langmuir; 2005 Apr 26; 21(9):3757-64. PubMed ID: 15835934
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  • 18. Surfactant-mediated dissolution of metformin hydrochloride tablets: wetting effects versus ion pairs diffusivity.
    Desai D, Wong B, Huang Y, Ye Q, Tang D, Guo H, Huang M, Timmins P.
    J Pharm Sci; 2014 Mar 26; 103(3):920-6. PubMed ID: 24549733
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  • 20. Preparation and in vitro/in vivo evaluation of gliclazide loaded Eudragit nanoparticles as a sustained release carriers.
    Devarajan PV, Sonavane GS.
    Drug Dev Ind Pharm; 2007 Feb 26; 33(2):101-11. PubMed ID: 17454041
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