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Research Article

Effect of drying technique on some physical properties of cross-linked high amylose/pectin mixtures

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Pages 284-289 | Received 15 Dec 2011, Accepted 16 Mar 2012, Published online: 21 Apr 2012

References

  • Chung HJ, Woo KS, Lim ST. (2004). Glass transition and enthalpy relaxation cross-linked corn starches. Carbohydr Polym, 55:9–15.
  • Cury BSF, Klein SI, Evangelista RC. (2008). Modeling a system of phosphated cross-linked high amylose for controlled drug release. Part 1: synthesis and polymer characterization. React Funct Polym, 68:1200–1206.
  • Peppas NA, Bures P, Leobandung W, Ichikawa H. (2000). Hydrogels in pharmaceutical formulations. Eur J Pharm Biopharm, 50:27–46.
  • Gupta P, Vermani K, Garg S. (2002). Hydrogels: from controlled release to pH-responsive drug delivery. Drug Discov Today, 7:569–579.
  • Zhang LL, Li P, Li YM, Wang AQ. (2011). Preparation and characterization of magnetic alginate-chitosan hydrogel beads loaded matrine. Drug Dev Ind Pharm, 1–11.
  • Tada D, Tanabe T, Tachibana A, Yamauchi K. (2005). Drug release from hydrogel containing albumin as crosslinker. J Biosci Bioeng, 100:551–555.
  • Grassi G, Lapasin R, Grassi M, Colombo I. (2007). Understanding drug release and absorption mechanisms: a physical and mathematical approach. Chapter 7. Drug Release from Matrix Systems. Boca Raton: CRC Press; 122 p.
  • Lenaerts V, Dumoulin Y, Mateescu MA. (1991). Controlled release of theophylline from cross-linked amylose tablets. J Controlled Release, 15:39–46.
  • Mulhbacher J, Ispas-Szabo P, Lenaerts V, Mateescu MA. (2001). Cross-linked high amylose starch derivatives as matrices for controlled release of high drug loadings. J Control Release, 76:51–58.
  • Désévaux C, Lenaerts V, Girard C, Dubreuil P. (2002). Characterization of crosslinked high amylose starch matrix implants. 2. In vivo release of ciprofloxacin. J Control Release, 82:95–103.
  • Calinescu C, Nadeau E, Mulhbacher J, Fairbrother JM, Mateescu MA. (2007). Carboxymethyl high amylose starch for F4 fimbriae gastro-resistant oral formulation. Int J Pharm, 343:18–25.
  • Cury BS, Castro AD, Klein SI, Evangelista RC. (2009). Modeling a system of phosphated cross-linked high amylose for controlled drug release. Part 2: physical parameters, cross-linking degrees and drug delivery relationships. Int J Pharm, 371:8–15.
  • Brouillet F, Baylac G, Cartilier L, Bataille B. (2010). High-amylose sodium carboxymethyl starch matrices for oral, sustained drug release: development of a spray-drying manufacturing process. Drug Dev Ind Pharm, 36:795–805.
  • Richardon PH, Jeffcoat R, Shi Y. (2000). High-amylose starches: from biosynthesis to their use as food ingredients. MRS Bulletin, 25:20–24.
  • Van Hung P, Maeda T, Morita N. (2006). Waxy and high-amylose wheat starches and flours characteristics, functionality and application. Trends Food Sci Technol, 17:448–456.
  • Liu L, Fishman ML, Kost J, Hicks KB. (2003). Pectin-based systems for colon-specific drug delivery via oral route. Biomaterials, 24:3333–3343.
  • Sriamornsak P, Thirawong N, Weerapol Y, Nunthanid J, Sungthongjeen S. (2007). Swelling and erosion of pectin matrix tablets and their impact on drug release behavior. Eur J Pharm Biopharm, 67:211–219.
  • Carbinatto FM, de Castro AD, Cury BS, Magalhães A, Evangelista RC. (2012). Physical properties of pectin-high amylose starch mixtures cross-linked with sodium trimetaphosphate. Int J Pharm, 423:281–288.
  • Prezotti FG, Meneguin AB, Evangelista RC, Cury BSF. (2012). Preparation and characterization of free films oh high amylose/pectin mixtures cross-linked with sodium trimetaphosphate. Drug Dev Ind Pharm, 1–6.
  • Brunauer S, Emmett PH, Teller E. (1938). Adsorption of gases in multimolecular layers. J Am Chem Soc, 68:309–319.
  • Barrett EP, Joyner LG, Halenda PP. (1951). The determination of pore volume and area distributions in porous substances. I. Computations from nitrogen isotherms. J Am Chem Soc, 73:373–380
  • Voigt R. (2000). Pharmazeutische Technologie: für Studium und Beruf. 9rd rev. ed. Stuttgart: Deutscher Apotheker. 161 p.
  • Abdelwahed W, Degobert G, Stainmesse S, Fessi H. (2006). Freeze-drying of nanoparticles: formulation, process and storage considerations. Adv Drug Deliv Rev, 58:1688–1713.
  • Juszczak L, Fortuna T, Wodnicka K. (2002). Characteristics of cereal starch granules surface using nitrogen adsorption. Food Eng, 54:103–110.
  • Sriamornsak P, Kennedy RA. (2008). Swelling and diffusion studies of calcium polysaccharide gels intended for film coating. Int J Pharm, 358:205–213.
  • Bajpai AK, Shukla SK, Bhanu S, Kankane S. (2008). Responsive polymers in controlled drug delivery. Prog Polym Sci, 33:1088–1118.
  • Souto-Maior JF, Reis AV, Pedreiro LN, Cavalcanti OA. (2010). Phosphated crosslinked pectin as a potential excipient for specific drug delivery: preparation and physicochemical characterization. Polym Int, 59:127–135.
  • Godeck R, Kunzek H, Kabbert R. (2001). Thermal analysis of plant cell wall materials depending on the chemical structure and pretreatment prior drying. Eur Food Res Technol, 213:395–404.
  • Einhorn-Stoll U, Kunzek H, Dongowski G. (2007). Thermal analysis of chemically and mechanically modified pectins. Food Hydrocol, 21:1101–1112.
  • Shi L, Gunasekaran S. (2008). Preparation of Pectin-ZnO Nanocomposite. Nanoscale Res Lett, 3:491–495.
  • Ghaffari A, Navaee K, Oskoui M, Bayati K, Rafiee-Tehrani M. (2007). Preparation and characterization of free mixed-film of pectin/chitosan/Eudragit RS intended for sigmoidal drug delivery. Eur J Pharm Biopharm, 67:175–186.
  • Massicote LP, Baile WE, Mateescu MA. (2008). Carboxylated high amylose starch as pharmaceutical excipients structural insights and formulation of pancreatic enzymes. Int J Pharm, 356:212–223.
  • Shi Y, Capitani T, Trzasko P, Jeffcoat R. (1998). Molecular structure of a low-amylopectin starch and other high-amylose maize starches. J Cereal Sci, 2:298–299.
  • Cristina Freire A, Fertig CC, Podczeck F, Veiga F, Sousa J. (2009). Starch-based coatings for colon-specific drug delivery. Part I: the influence of heat treatment on the physico-chemical properties of high amylose maize starches. Eur J Pharm Biopharm, 72:574–586.
  • Mishra RK, Datt M, Banthia AK. (2008). Synthesis and characterization of pectin/PVP hydrogel membranes for drug delivery system. AAPS PharmSciTech, 9:395–403.
  • Mora MJ, Longhi MR, Granero GE. (2010). Synthesis and characterization of binary and ternary complexes of diclofenac with a methyl-beta-CD and monoethanolamine and in vitro transdermal evaluation. Eur J Med Chem, 45:4079–4088.
  • Ispas-Szabo P, Ravenelle F, Hassan I, Preda M, Mateescu MA. (2000). Structure-properties relationship in cross-linked high-amylose starch for use in controlled drug release. Carbohydr Res, 323:163–175.

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