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Articles

Facile fabrication of pH-responsive and swellable slow release microparticles of chlorpheniramine maleate with chitosan-starch matrices and their crosslinks

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Pages 269-283 | Received 30 Aug 2018, Accepted 15 Dec 2018, Published online: 21 Jan 2019

References

  • Notario-Perez, F.; Martin-Illana, A.; Cazorla-Luna, R.; Ruiz-Caro, R.; Bedoya, L.; Tamayo, A.; Rubio, J.; Veiga, M. Influence of Chitosan Swelling Behavior on Controlled Release of Tenofovir from Mucoadhesive Vaginal Systems for Prevention of Sexual Transmission of HIV. Mar. Drugs. 2017, 15(2), 1–16.
  • Ali, A.; Ahmed, S. A Review on Chitosan and Its Nanocomposites in Drug Delivery. Int. J. Biol. Macromol. 2018, 109, 273–286. doi:10.1016/j.ijbiomac.2017.12.078.
  • Bansal, V.; Sharma, K.P.; Sharma, N.; Pal, P.O.; Malviya, R. Applications of Chitosan and Chitosan Derivatives in Drug Delivery. Adv. Biol. Res. 2011, 5(1), 28–37.
  • Gupta, N.V.; Natasha, S.; Getyala, A.; Bhat, R.S. Bioadhesive Vaginal Tablets Containing Spray Dried Microspheres Loaded With Clotrimazole for Treatment Of Vaginal Candidiasis. Acta Pharm. 2013, 63, 359–372. doi:10.2478/acph-2013-0027.
  • Jameela, S. R.; Misra, A. and Jayakrishnan, A. Cross-linked chitosan microspheres as carriers for prolonged delivery of macromolecular drugs. J. Biomater. Sci. - Polym. Ed. 1994, 6, 621–631. doi:10.1163/156856294X00563.
  • Nnamonu, L.A.; Sha’Ato, R.; Onyido, I. Alginate Reinforced Chitosan and Starch Beads in Slow Release Formulation of Imazaquin Herbicide- Preparation and Characterization Mater. Sci. App. 2012, 3, 566–574. doi:10.4236/msa.2012.38081.
  • Wu, F.-C.; Tseng, R.-L.; Juang, R.-S. Enhanced Abilities of Highly Swollen Chitosan Beads for Color Removal and Tyrosinase Immobilization. J. Hazard. Mater. 2001, B81, 167–177. doi:10.1016/S0304-3894(00)00340-X.
  • Park, I.; Cheng, J.; Pisano, A.P. Low Temperature, Low Pressure Nanoimprinting of Chitosan as a Biomaterial for Bionanotechnology Applications. Appl. Phys. Lett. 2007, 90, 1–3.
  • Grenha, A. Chitosan Nanoparticles: A Survey of Preparation Methods. J. Drug. Target. 2012, 20(4), 291–300. doi:10.3109/1061186X.2011.654121.
  • Mardani, T.; Khiabani, M.S.; Mokarram, R.R.; Hamishekhar, H. Immobilization of -Amylase on Chitosan-Montmorillonite Nanocomposite Beads. Int. J. Biol. Macromol. 2018, 120, 354–360. doi:10.1016/j.ijbiomac.2018.08.065.
  • Szymanska, E.; Winnicka, K. Preparation and In Vitro Evaluation of Chitosan Microgranules with Clotrimazole. Acta Polo. Pharm. 2012, 69(3), 509–513.
  • Kang, B.S.; Lee, S.E.; Ng, C.L.; Kim, J.K.; Park, J.S. Exploring the Preparation of Albendazole-Loaded Chitosan-Tripolyphosphate Nanoparticles. Materials. 2015, 8, 486–498. doi:10.3390/ma8020486.
  • Yu, X.; Mu, Y.; Xu, M.; Xia, G.; Wang, J.; Liu, Y.; Chen, X. Preparation and Characterization of Mucosal Adhesive and Two-Step Drug Releasing Cetirizine-Chitosan Nanoparticle. Carbohydr. Polym. 2017, 173, 600–609. doi:10.1016/j.carbpol.2017.05.067.
  • Dutta, P.K.; Dutta, J.; Tripathi, V.S. Chitin and Chitosan Chemistry, Properties and Applications. J. Sci. Ind. Res. 2004, 63, 20–31.
  • Rani, M.; Agarwal, A.; Negi, Y.S. Characterization and Biodegradation Studies for Interpenetrating Polymeric Network (IPN) of Chitosan-Amino Acid Beads. J. Biomater. Nanobiotech. 2011, 2, 71–84. doi:10.4236/jbnb.2011.21010.
  • Onyido, I.; Sha’Ato, R.; Nnamonu L.A. Environmentally Friendly Formulations of Trifluralin Based on Alginate Modified Starch. J. Environ. Protect. 2012, 3(9), 1085–1093. doi:10.4236/jep.2012.39127.
  • Sudha, P.N.; Gomathi, T.; Govindarajan, C.; Ramasubramanian, S. Removal of Chromium (VI) from Aqueous Solution Using Chitosan-Starch Blend. Der Pharm. Lett. 2012, 4(1), 240–248.
  • Csaba, N.; Koping-Hoggard, M.; Alonso, M.J. Ionically Crosslinked Chitosan/Tripolyphosphate Nanoparticles for Oligonucleotide and Plasmid DNA Delivery. Int. J. Pharm. 2009, 382(1–2), 205–214. doi:10.1016/j.ijpharm.2009.07.028.
  • Muxika, A.; Etxabide, A.; Uranga, J.; Guerrero, P.; de la Caba, K. Chitosan as a Bioactive Polymer: Processing, Properties and Applications. Int. J. Bio. Macromol. 2017, 105, 1358–1368. doi:10.1016/j.ijbiomac.2017.07.087.
  • Severino, P.; Silva, C.; Silva, M.A.; Santana, M.H.; Souto, E.B. Chitosan Cross-Linked Pentasodium Tripolyphosphate Micro/Nanoparticles Produced by Ionotropic Gelation. Sugar Tech. 2016, 18(1), 49–54. doi:10.1007/s12355-014-0360-z.
  • Jelvehgari, M.; Barghi, L.; Barghi, F. Preparation of Chlorpheniramine Maleate-Loaded Alginate/Chitosan Particulate Systems by the Ionic Gelation Method for Taste Masking. Jundishapur J. Natur. Pharm. Prod. 2014, 9(1), 39–48. doi:10.17795/jjnpp-12530.
  • Okolo, P.O.; Akakuru, O.U.; Osuoji, O.U.; Jideonwo, A. Studies on the Properties of Chitosan- Starch Beads and Their Application as Drug Release Materials. Bayero J. Pure App. Sci. 2013, 6(1), 118–126. doi:10.4314/bajopas.v6i1.24.
  • Kumari, K.; Rani, U. Controlled Release of Metformin Hydrochloride Through Crosslinked Blends of Chitosan-Starch. Adv. App. Sci. Res. 2011, 2(2), 48–54.
  • Gierszewska-Druzynska, M.; Ostrowska-Czubenko, J. Mechanism of Water Diffusion into Noncrosslinked and Ionically Crosslinked Chitosan Membranes. Prog. Chem. App. Chitin. Der. 2012, XVII, 59–66.
  • (a) Czechowska-Biskup, R.; Jarosinska, D.; Rokita, B.; Ulanski, P.; Rosiak, J.M. Determination of Degree of Deacetylation of Chitosan – Comparison of Methods. Prog. Chem. App. Chitin. Der. 2012, XVII, 5–20. (b) Al-Manhel, A.J.; Al-Hilphy, A.R.S.; Niamah, A.K. Extraction of Chitosan, Characterisation and Its Use for Water Purification. J. Saudi Soc. Agric. Sci. 2018, 17, 186–190.
  • Rohindra, D.R.; Nand, A.V.; Khurma, I.R. Swelling Properties of Chitosan Hydrogels. South Pac. J. Natur. Sci. 2004, 22(1), 32–35. doi:10.1071/SP04005.
  • Bambgose, J. T.; Bamigbade, A. A.; Adewuyi, S.; Dare, E. O.; Lasisi, A. A.; Njah, A. N. Equilibrium Swelling and Kinetic Studies of Highly Swollen Chitosan Film. J. Chem. Chem. Eng. 2012, 6, 272–283.
  • Sridhar, B. K.; Srinatha, A.; Zaman, B. B.; Ragunandan, H. Development and Evaluation of Microbial Degradation Dependent Compression Coated Secnidazole Tablets for Colonic Delivery. Indian J. Pharm. Sci. 2011, 73(6), 641–648. doi:10.4103/0250-474X.100238.
  • Dash, S.; Murthy, P.N.; Nath, L.; Chowdhury, P. Kinetic Modeling on Drug Release from Controlled Drug Delivery Systems. Acta Polo Pharm. 2010, 67, 217–223.
  • (a) Mithun, U.; Vishalakshi, B. Swelling Kinetics of a pH-Sensitive Polyelectrolyte Complex of Polyacrylamide-g-Alginate and Chitosan. Int. J. Chem. Tech. Res. 2014, 6(7), 3579–3588. (b) Tian, Y.; Li, Y.; Xu, X.; Jin, Z. Starch Retrogradation Studied by Thermogravimetric Analysis (TGA). Carbohydr. Polym. 2011, 84, 1165–1168.
  • Szymanska, E.; Szekalska, M.; Czamomysy, R.; Lavric, Z.; Srcic, S.; Miltyk, W.; Winnicka, K. Novel Spray Dried Glycerol 2-Phosphate Cross-Linked Chitosan Microparticle Vaginal Delivery System – Development, Characterization and Cytotoxicity Studies. Mar. Drugs. 2016, 14(174), 1–22. doi:10.3390/md14100174.
  • Ostrawka-Czubenko J.; Pieróg, M.; Gierszewska-Drużyńs, M. State of Water in Noncrosslinked and Crosslinked Hydrogel Chitosan Membranes – DSC Studies. Prog. Chem. App. Chitin. Der. 2011, XVI, 147–156.
  • Desai, K.G.H.; Park, H.J. Preparation and Characterization of Drug-Loaded Chitosan-Tripolyphosphate Microspheres by Spray Drying. Drug Dev. Res. 2005, 64, 114–128. doi:10.1002/ddr.10416.
  • Gierszewska-Druzynska, M.; Ostrowska-Czubenko, J. Structural and Swelling Properties of Hydrogel Membranes Based on Chitosan Crosslinked with Glutaraldehyde and Sodium Tripolyphosphate. Prog. Chem. App. Chitin. Der. 2015, XX,45–57.
  • Karimi, M. Diffusion in Polymer Solids and Solutions. In Mass Transfer in Chemical Engineering Processes; Jozef, M., Eds.; InTech: London, United Kingdom, 2011, pp 17–40.
  • Pourjavadi, A.; Mahdavinia, G.R. Absorbency, pH-Sensitivity and Swelling Kinetics of Partially Hydrolyzed Chitosan-g-Poly (Acrylamide) Hydrogels. Turk. J. Chem. 2006, 30, 595–608.
  • Katime, I.; Mendizabal, E. Swelling Properties of New Hydrogels Based on the Dimethyl Amino Ethyl Acrylate Methyl Chloride Quaternary Salt with Acrylic Acid and 2-Methylene Butane-1,4-Dioic Acid Monomers in Aqueous Solutions. Mater. Sci. App. 2010, 1, 162–167. doi:10.4236/msa.2010.13026.
  • Chime, S.; Onunkwo, G.C.; Onyishi, I.I. Kinetics and Mechanisms of Drug Release from Swellable and Non Swellable Matrices: A Review. Res. J. Pharm. Bio. Chem. Sci. 2013, 4(2), 97–103.
  • Srinatha, A.; Pandit, J.K.; Singh, S. Ionic Cross-Linked Chitosan Beads for Extended Release of Ciprofloxacin: In Vitro Characterization. Indian J. Pharm. Sci. 2008, 70(1), 16–21. doi:10.4103/0250-474X.40326.
  • Gibaldi, M.; Feldom, S. Establishment of Sink Solutions in Dissolution Rate Determinations – Theoretical Considerations and Application to Nondisintegrating Dosage Forms. J. Pharm. Sci. 1967, 56(10), 1238–1242. doi:10.1002/jps.2600561005.
  • Higuchi, T. Rate of Release of Medicaments from Ointment Bases Containing Drugs in Suspension. J. Pharm. Sci. 1961, 50(10):874–875. doi:10.1002/jps.2600501018.

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