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PUBMED FOR HANDHELDS

Journal Abstract Search


233 related items for PubMed ID: 35041915

  • 21. A comparative study of the effect of spray drying and hot-melt extrusion on the properties of amorphous solid dispersions containing felodipine.
    Mahmah O, Tabbakh R, Kelly A, Paradkar A.
    J Pharm Pharmacol; 2014 Feb; 66(2):275-84. PubMed ID: 24433426
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  • 22. Hot melt extrusion (HME) for amorphous solid dispersions: predictive tools for processing and impact of drug-polymer interactions on supersaturation.
    Sarode AL, Sandhu H, Shah N, Malick W, Zia H.
    Eur J Pharm Sci; 2013 Feb 14; 48(3):371-84. PubMed ID: 23267847
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  • 23. Evaluation of griseofulvin binary and ternary solid dispersions with HPMCAS.
    Al-Obaidi H, Buckton G.
    AAPS PharmSciTech; 2009 Feb 14; 10(4):1172-7. PubMed ID: 19842041
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  • 24. Impact of Hydroxypropyl Methylcellulose Acetate Succinate Critical Aggregation Concentration on Celecoxib Supersaturation.
    Bristol AN, Lamm MS, Li Y.
    Mol Pharm; 2021 Dec 06; 18(12):4299-4309. PubMed ID: 34738825
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  • 26. Enteric Polymer-Based Amorphous Solid Dispersions Enhance Oral Absorption of the Weakly Basic Drug Nintedanib via Stabilization of Supersaturation.
    Qin Y, Xiao C, Li X, Huang J, Si L, Sun M.
    Pharmaceutics; 2022 Aug 30; 14(9):. PubMed ID: 36145578
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  • 28. Dissolution of Danazol Amorphous Solid Dispersions: Supersaturation and Phase Behavior as a Function of Drug Loading and Polymer Type.
    Jackson MJ, Kestur US, Hussain MA, Taylor LS.
    Mol Pharm; 2016 Jan 04; 13(1):223-31. PubMed ID: 26618718
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  • 29. Poly(vinylpyridine-co-vinylpyridine N-oxide) Excipients Mediate Rapid Dissolution and Sustained Supersaturation of Posaconazole Amorphous Solid Dispersions.
    Liu YS, Della Rocca J, Schenck L, Koynov A, Sifri RJ, Winston MS, Frank DS.
    Mol Pharm; 2024 Mar 04; 21(3):1182-1191. PubMed ID: 38323546
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  • 30. Impact of polymer type on bioperformance and physical stability of hot melt extruded formulations of a poorly water soluble drug.
    Mitra A, Li L, Marsac P, Marks B, Liu Z, Brown C.
    Int J Pharm; 2016 May 30; 505(1-2):107-14. PubMed ID: 27012984
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  • 31. Amorphous solid dispersions of weak bases with pH-dependent soluble polymers to overcome limited bioavailability due to gastric pH variability - An in-vitro approach.
    Monschke M, Wagner KG.
    Int J Pharm; 2019 Jun 10; 564():162-170. PubMed ID: 30991134
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  • 37. Synergistic and antagonistic effects of various amphiphilic polymer combinations in enhancing griseofulvin release from ternary amorphous solid dispersions.
    Rahman M, Coelho A, Tarabokija J, Ahmad S, Radgman K, Bilgili E.
    Eur J Pharm Sci; 2020 Jul 01; 150():105354. PubMed ID: 32380151
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  • 38. Evaluation of hypromellose acetate succinate (HPMCAS) as a carrier in solid dispersions.
    Tanno F, Nishiyama Y, Kokubo H, Obara S.
    Drug Dev Ind Pharm; 2004 Jan 01; 30(1):9-17. PubMed ID: 15000425
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  • 39. Development of Solid Dispersion by Hot Melt Extrusion Using Mixtures of Polyoxylglycerides With Polymers as Carriers for Increasing Dissolution Rate of a Poorly Soluble Drug Model.
    Vasoya JM, Desai HH, Gumaste SG, Tillotson J, Kelemen D, Dalrymple DM, Serajuddin ATM.
    J Pharm Sci; 2019 Feb 01; 108(2):888-896. PubMed ID: 30257196
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  • 40. Utility of Films to Anticipate Effect of Drug Load and Polymer on Dissolution Performance from Tablets of Amorphous Itraconazole Spray-Dried Dispersions.
    Honick M, Sarpal K, Alayoubi A, Zidan A, Hoag SW, Hollenbeck RG, Munson EJ, Polli JE.
    AAPS PharmSciTech; 2019 Nov 01; 20(8):331. PubMed ID: 31677012
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