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Research Article

pH-sensitive hydrogels based on semi-interpenetrating network (semi-IPN) of chitosan and polyvinyl pyrrolidone for clarithromycin release

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Pages 1160-1169 | Received 16 Oct 2010, Accepted 11 Feb 2011, Published online: 21 Mar 2011

Reference

  • Khurma JR, Nand AV. (2008). Temperature and pH sensitive hydrogels composed of chitosan and poly(ethylene glycol). Polym Bull, 59:805–812.
  • Ekici S, Saraydin D. (2007). Interpenetrating polymeric network hydrogels for potential gastrointestinal drug release. Polym Int, 56:1371–1377.
  • Dergunov SA, Mun GA. (2009). γ-irradiated chitosan-polyvinyl pyrrolidone hydrogels as pH-sensitive protein delivery system. Rad Phys Chem, 78:65–68.
  • Wu W, Shen J, Banerjee P, Zhou S. (2010a). Chitosan-based responsive hybrid nanogels for integration of optical pH-sensing, tumor cell imaging and controlled drug delivery. Biomaterials, 31:8371–8381.
  • Risbud MV, Hardikar AA, Bhat SV, Bhonde RR. (2000). pH-sensitive freeze-dried chitosan–polyvinyl pyrrolidone hydrogels as controlled release system for antibiotic delivery. J Control Rel, 68:23–30.
  • Wu W, Aiello M, Zhou T, Berliner A, Banerjee P, Zhou S. (2010b). In-situ immobilization of quantum dots in polysaccharide-based nanogels for integration of optical pH-sensing, tumor cell imaging, and drug delivery. Biomaterials, 31:3023–3031.
  • Li J, Zivanovic S, Davidson PM, Kit K. (2010). Characterization and comparison of chitosan/PVP and chitosan/PEO blend films. Carbohyd Poly, 79:786–791.
  • Aldana AA, Martinelli M, Strumia M. (2010). Synthesis and Properties of Dendronized Chitosan. Macromol Symp, 298:99–107.
  • Suknuntha K, Tantishaiyakul V, Vao-Soongnern V, Espidel Y, Cosgrove T. (2008). Molecular Modeling Simulation and Experimental Measurements to Characterize Chitosan and Poly(vinyl pyrrolidone) Blend Interactions. J Polym Sci B, 46:1258–1264.
  • Hu Y, Chen Q, Ding Y, Li R, Jiang X, Liu B. (2009). Entering and lighting up nuclei using hollow chitosan–gold hybrid nanospheres. Adv Mater, 21:3639–3643.
  • Karavas E, Georgarakis E, Bikiaris D. (2006). Adjusting drug release by using miscible polymer blends as effective drug carries. J Therm Anal Calorim, 84:125–133.
  • Karavas E, Georgarakis E, Sigalas MP, Avgoustakis K, Bikiaris D. (2007). Investigation of the release mechanism of a sparingly water-soluble drug from solid dispersions in hydrophilic carriers based on physical state of drug, particle size distribution and drug-polymer interactions. Eur J Pharm Biopharm, 66:334–347.
  • Papageorgiou GZ, Papadimitriou S, Karavas E, Georgarakis E, Docoslis A, Bikiaris D. (2009). Improvement in chemical and physical stability of fluvastatin drug through hydrogen bonding interactions with different polymer matrices. Curr Drug Deliv, 6:101–112.
  • Abdelrazek EM, Elashmawi IS, Labeeb S. (2010). Chitosan filler effects on the experimental characterization, spectroscopic investigation and thermal studies of PVA/PVP blend films. Physica B, 405:2021–2027.
  • Marsano E, Vicini S, Skopinska J, Wisniewski M, Sionkowska A. (2004). Chitosan and poly(vinyl pyrrolidone): Compatibility and miscibility blends. Macromol Symp, 218:251–260.
  • Demirci S, Alaslan A, Caykara T. (2009). Preparation, characterization and surface pKa values of poly(N-vinyl-2-pyrrolidone)/chitosan blend films. Appl Surf Sci, 255:5979–5983.
  • Suman R, Uma Maheshwari RB, Jain NK. (2006). Clarithromycin based oral sustained release nanoparticulate drug delivery system. Indian J Pharm Sci, 68:479–84.
  • Salem II. (2005). Clarithromycin. In: Brittain HG, ed. Analytical profiles of drug substances and exipients. California: Academic, pp. 45–85.
  • Nama M, Gonugunta CS, Reddy Veerareddy P. (2008). Formulation and evaluation of gastroretentive dosage forms of clarithromycin. AAPS Pharmscitech, 9:231–237.
  • Gómez-Burgaz M, García-Ochoa B, Torrado-Santiago S. (2008). Chitosan-carboxymethylcellulose interpolymer complexes for gastric-specific delivery of clarithromycin. Int J Pharm, 359:135–143.
  • Bardonnet PL, Faivre V, Pugh WJ, Piffaretti JC, Falson F. (2006). Gastroretentive dosage forms: overview and special case of Helicobacter pylori. J Control Release, 111:1–18.
  • Gupta NV, Satish CS, Shivakumar HG. (2007). Preparation and characterization of gelatin-poly(methacrylic acid) interpenetrating polymeric network hydrogels as a pH-sensitive delivery system for glipizide. Ind J Pharm Sci, 69:64–68.
  • Gupta A, Garg S, Khar RK. (1993). Measurement of bioadhesive strength of mucoadhesive buccal tablets: Design of an in vitro assembly. Indian Drugs, 30:152–155.
  • Vaghani SS, Patel SG, Jivani RR, Jivani NP, Patel MM, Borda R. (2010b). Design and optimization of a stomach-specific drug delivery system of repaglinide: Application of simplex lattice design. Pharm Dev Technol, (In Press).
  • Jivani RR, Patel CN, Jivani NP. (2009). Design and development of a Self Correcting Monolithic Gastroretentive Tablet of Baclofen. Sci Pharm, 77:651–667.
  • Singh B, Ahuja N. (2002). Development of controlled-release buccoadhesive hydrophilic matrices of diltiazem hydrochloride: optimization of bioadhesion, dissolution, and diffusion parameters. Drug Dev Ind Pharm, 28:431–442.
  • Vaghani S, Vasanti S, Chaturvedi K, Satish CS, Shankar SJ. (2008). Formulation and Evaluation of 5-FU Loaded Eudragit Microspheres: Effect of Various Eudragit on Micromeretic Properties of Microspheres J Macromol Sci Chem, 45:1015–1027.
  • Yang GM, Kuo JF, Woo EM. (2006). Preparation and control-release kinetics of isosorbide dinitrate microspheres. j Microencapsul, 23:622–631.
  • Vaghani S, Vasanti S, Chaturvedi K, Satish CS, Jivani NP. (2010a). Stomach-specific drug delivery of 5-fluorouracil using ethylcellulose floating microspheres. Pharm Dev Technol, 15:154–161.
  • Remuñán-López C, Lorenzo-Lamosa ML, Vila-Jato JL, Alonso MJ. (1998). Development of new chitosan-cellulose multicore microparticles for controlled drug delivery. Eur J Pharm Biopharm, 45:49–56.
  • Lhommeau C, Toillon S, Pith T, Kessler L, Jesser C, Pinget M. (1997). Polyamide 4,6 membranes for the encapsulation of Langerhans islets: preparation, physico-chemical properties and biocompatibility studies. J Mater Sci Mater Med, 8:163–174.
  • Bernkop-Schnürch A. (2000). Chitosan and its derivatives: potential excipients for peroral peptide delivery systems. Int J Pharm, 194:1–13.
  • Säkkinen M, Marvola J, Kanerva H, Lindevall K, Ahonen A, Marvola M. (2006). Are chitosan formulations mucoadhesive in the human small intestine? An evaluation based on gamma scintigraphy. Int J Pharm, 307:285–291.
  • Zhao L, Xu L, Mitomo H, Yoshii F. (2006). Synthesis of pH-sensitive PVP/CM-chitosan hydrogels with improved surface property by irradiation. Carbohyd Poly, 64:473–480.
  • Banerjee T, Mitra S, Kumar Singh A, Kumar Sharma R, Maitra A. (2002). Preparation, characterization and biodistribution of ultrafine chitosan nanoparticles. Int J Pharm, 243:93–105.
  • Anjali Devi D, Smitha B, Sridhar B, Aminabhavi TM. (2006). Novel cross-linked chitosan/poly(vinylpyrrolidone) blend membranes for dehydrating tetrahydrofuran by the pervaporation technique. J Membrane Sci, 280:45–63.
  • Neira-Carrillo A, Yazdani-Pedram M, Retuert J, Diaz-Dosque M, Gallois S, Arias JL. (2005). Selective crystallization of calcium salts by poly(acrylate)-graphted chitosan. J Colloid Interf Sci, 286:134–141.
  • Smitha B, Sridhar S, Khan AA. (2006). Chitosan–poly(vinyl pyrrolidone) blends as membranes for direct methanol fuel cell applications. J Power Sources, 159:846–854.
  • Zhao L, Mitomo H, Zhai M, Yoshii F, Nagasawa N, Kume T. (2003). Synthesis of antibacterial PVA/CM-chitosan blend hydrogels with electron beam irradiation Carbohyd Poly, 53:439–446.

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