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Research Articles

Preparation of hybrid materials for controlled drug release

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Pages 1058-1065 | Received 25 Jun 2015, Accepted 02 Oct 2015, Published online: 11 Nov 2015

References

  • Sanchez C, Julian B, Belleville P, Popall M. Applications of hybrid organic–inorganic nanocomposites. J Mater Chem 2005;15:3559–92.
  • Vasconcelos T, Sarmento B, Costa P. Solid dispersion as strategy to improve oral bioavailability of poor water soluble drugs. Drug Discov Today 2007;12:1068–75.
  • Kalia A, Poddar M. Solid dispersions: an approach towards enhancing dissolution. Int J Pharm Pharm Sci 2011;3:9–19.
  • Kaur J, Aggarwal G, Singh G, Rana AC. Improvement of drug solubility using solid dispersion. Int J Pharm Pharm Sci 2012;4: 47–53.
  • Sharma A Jain CP. Solid dispersion: a promising technique to enhance solubility of poorly water soluble drug. Int J Drug Delivery 2011;3:149–70.
  • Sinha S, Baboota S, Ali M, et al. Solid dispersion: an alternative technique for bioavailability enhancement of poorly soluble drugs. J Dispersion Sci Technol 2009;30: 1458–73.
  • Janssens S Van den Mooter G. Review: physical chemistry of solid dispersions. J Pharm Pharmacol 2009;61:1571–86.
  • Sonpal RN, Lalwani AN, Darji VC, Patel KR. Solid dispersion: an efficient tool for increasing bioavailibility of poorly soluble drugs. Int J Pharm Sci Rev Res 2011;8:37–52.
  • Bose S, Tarafder S. Calcium phosphate ceramic systems in growth factor and drug delivery for bone tissue engineering: a review. Acta Biomater 2012;8:1401–21.
  • Ulery BD, Nair LS, Laurencin CT. Biomedical applications of biodegradable polymers. J Polym Sci B Polym Phys 2011;49: 832–64.
  • Pillai O, Panchagnula R. Polymers in drug delivery. Curr Opin Chem Biol 2001;5:447–51.
  • Uhrich KE, Cannizzaro SM, Langer RS, Shakesheff KM. Polymeric systems for controlled drug release. Chem Rev 1999;99:3181–98.
  • Park JH, Ye M, Park K. Biodegradable polymers for microencapsulation of drugs. Molecules 2005;10:146–61.
  • Bose S, Tarafder S, Edgington J, Bandyopadhyay A. Calcium phosphate ceramics in drug delivery. JOM 2011;63:93–8.
  • Habraken WJEM, Wolke JGC, Jansen JA. Ceramic composites as matrices and scaffolds for drug delivery in tissue engineering. Adv Drug Deliv Rev 2007;59:234–48.
  • Bajpai AK, Shukla SK, Bhanu S, Kankane S. Responsive polymers in controlled drug delivery. Prog Polym Sci 2008;33: 1088–118.
  • Huang JC. A model of controlled release of polymer-dispersed drug systems containing regulatory particles. Int J Polym Mater Polym Biomater 2001;49:367–77.
  • Ginebra MP, Traykova T, Planell JA. Calcium phosphate cements as bone drug delivery systems: a review. J Control Release 2006;113:102–10.
  • Öner M, Uysal U. Synthesis of hydroxyapatite crystals using carboxymethyl inulin for use as a delivery of ibuprofen. Mater Sci Eng C Mater Biol Appl 2013;33:482–9.
  • Čolović B, Pašalić S, Jokanović V. Influence of hydroxyapatite pore geometry on tigecycline release kinetics. Ceram Int 2012;38:6181–9.
  • Öner M, Yetiz E, Ay E, Uysal U. Ibuprofen release from porous hydroxyapatite tablets. Ceram Int 2011;37:2117–25.
  • Bielicka-Daszkiewicz K, Milczewska K, Voelkel A. Zastosowanie metod chromatograficznych. Poznań University of Technology, Poznań 2010 (in Polish).
  • Voelkel A, Strzemiecka B, Adamska K, Milczewska K. Surface and bulk characteristics of polymers by means of inverse gas chromatography. In: Nastasovic A, Jovanovic S, eds. Polymeric materials. Reaserch Singpost; 2009:71–102.
  • Grimsey IM, Feeley JC, York P. Analysis of the surface energy of pharmaceutical powders by inverse gas chromatography. J Pharm Sci 2002;91:571–83.
  • Das SC, Stewart PJ. Characterising surface energy of pharmaceutical powders by inverse gas chromatography at finite dilution. J Pharm Pharmacol 2012;64:1337–48.
  • Kołodziejek J, Główka E, Hyla K, et al. Relationship between surface properties determined by inverse gas chromatography and ibuprofen release from hybrid materials based on fumed silica. Int J Pharm 2013;441:441–8.
  • Milczewska K, Voelkel A, Piędzia K. Interactions in PEG/Aerosil® and PLA/Aerosil® composites described by IGC-determined Flory-Huggins χ23 parameter. J Polym Res 2014;21:394.
  • Voelkel A, Strzemiecka B, Milczewska K, Okulus Z. Inverse gas chromatographic examination of polymer composites. Open Chem 2015;13:893–900.
  • Silverstein RM, Webster FX, Kiemle DJ. Spectrometric identification of organic compounds. New York: Willey; 1967.
  • PerkinElmer Technical Note – FT-IR Spectroscopy Attenuated Total Reflectance (ATR) 2005.
  • Kazarian SG, Martirosyan GG. Spectroscopy of polymer/drug formulations processed with supercritical fluids: in situ ATR-IR and Raman study of impregnation of ibuprofen into PVP. Int J Pharm 2002;232:81–90.
  • Joschek S, Nies B, Krotz R, Göpferich A. Chemical and physicochemical characterization of porous hydroxyapatite ceramics made of natural bone. Biomaterials 2000;21:1645–58.

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