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Research Article

Effective parameters in determining cross-linked dextran microsphere characteristics: screening by Plackett–Burman design-of-experiments

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Pages 599-611 | Received 18 Jul 2012, Accepted 14 Jan 2013, Published online: 27 Mar 2013

References

  • Al Haushey L, Bolzinger MA, Bordes C, Gauvrit JY, Briancon S. Improvement of a bovine serum albumin microencapsulation process by screening design. Int J Pharm 2007; 344(1–2)16–25
  • Arshady R. Microspheres and microcapsules: A survey of manufacturing techniques. Part 1. Suspension crosslinking. Polym Eng Sci 1989; 29(24)1746–58
  • Arshady R. Suspension, emulsion, and dispersion polymerization – A methodological survey. Colloid Polym Sci 1992; 270(8)717–32
  • Atyabi F, Manoochehri S, Moghadam SH, Dinarvand R. Cross-linked starch microspheres: Effect of cross-linking condition on the microsphere characteristics. Arch Pharm Res 2006; 29(12)1179–86
  • Bahukudumbi P, Carson KH, Rice-Ficht AC, Andrews MJ. On the diameter and size distributions of bovine serum albumin (BSA)-based microspheres. J Microencapsul 2004; 21(7)787–803
  • Bo J. Study on PVA hydrogel cross-linked by epichlorohydrin. J Appl Polym Sci 1992; 46(5)783–6
  • Bray JC, Merrill EW. Poly(vinyl alcohol) hydrogels for synthetic articular cartilage material. J Biomed Mater Res 1973; 7(5)431–43
  • Calabrese RV, Chang TPK, Dang PT. Drop breakup in turbulent stirred tank contactors. Part I. Effect of dispersed phase viscosity. AIChE J 1986; 32(4)657–66
  • Canal T, Peppas NA. Correlation between mesh size and equilibrium degree of swelling of polymeric networks. J Biomed Mater Res 1989; 23(10)1183–93
  • Chen G, Tao D. An experimental study of stability of oil–water emulsion. Fuel Process Technol 2005; 86(5)499–508
  • Coviello T, Matricardi P, Marianecci C, Alhaique F. Polysaccharide hydrogels for modified release formulations. J Control Release 2007; 119(1)5–24
  • de Jong SJ, van Nostrum CF, Kettenes-van den Bosch JJ, De Smedt SC, Hennink WE. Degradable self-assembled drug delivery systems: Dextran hydrogels by stereocomplex formation. Abstr Papers Am Chem Soc 2001; 221: U440–U40
  • Dubey RR, Parikh RH. Two-stage optimization process for formulation of chitosan microspheres. AAPS PharmSciTech 2004; 5(1)20–8
  • El-Malah Y, Nazzal S. Hydrophilic matrices: Application of Placket–Burman screening design to model the effect of POLYOX-carbopol blends on drug release. Int J Pharm 2006; 309(1–2)163–70
  • Emami J, Hamishehkar H, Najafabadi AR, Gilani K, Minaiyan M, Mahdavi H, Mirzadeh H, Fakhari A, Nokhodchi A. Particle size design of PLGA microspheres for potential pulmonary drug delivery using response surface methodology. J Microencapsul 2009; 26(1)1–8
  • Flory PJ, Rehner J, Jr. Statistical mechanics of cross linked polymer networks. II. Swelling. J Chem Phys 1943; 11: 521–6
  • Freiberg S, Zhu XX. Polymer microspheres for controlled drug release. Int J Pharm 2004; 282(1–2)1–18
  • Ghaderi R, Sturesson C, Carlfors J. Effect of preparative parameters on the characteristics of poly,-lactide-co-glycolide) microspheres made by the double emulsion method. Int J Pharm 1996; 141(1–2)205–16
  • Guner A, Akman O, Rzaev ZMO. Crosslinking of dextran with some selective Cl-, P- and N-containing functional substances in aqueous solutions. React Funct Polym 2001; 47(1)55–65
  • Hamdi G, Ponchel G, Duchene D. Formulation of epichlorohydrin cross-linked starch microspheres. J Microencapsul 2001; 18(3)373–83
  • Heinze T, Liebert T, Heublein B, Hornig S. Functional polymers based on dextran. Adv Polym Sci 2006; 205: 199–291
  • Heinze T, Michealis N, Hornig S. Reactive polymeric nanoparticles based on unconventional dextran derivatives. Eur Polym J 2007; 43(3)697–703
  • Hou X, Yang J, Huang DG, Wang XL, Yao KD. Preparation and protein adsorption of hydrogel polysucrose microspheres. J Appl Polym Sci 2006; 102(6)5934–40
  • Imren D, Gumusderelioglu M, Guner A. Synthesis and characterization of dextran hydrogels prepared with chlor- and nitrogen-containing crosslinkers. J Appl Polym Sci 2006; 102(5)4213–21
  • Jahanzad F. Some comparative aspects of particle formation and rate of reaction in emulsion polymerization of vinyl acetate and butyl acrylate. J Appl Polym Sci 2010; 117(1)84–90
  • Jahanzad F, Sajjadi S, Yianneskis M, Brooks BW. In situ mass-suspension polymerisation. Chem Eng Sci 2008; 63(17)4412–17
  • Jeffery H, Davis SS, O'Hagan DT. The preparation and characterization of poly(lactide-co-glycolide) microparticles. II. The entrapment of a model protein using a (water-in-oil)-in-water emulsion solvent evaporation technique. Pharm Res 1993; 10(3)362–8
  • Jensen KL. Experimental design in biotechnology. Technometrics 1991; 33(1)106–8
  • Kenari HS, Imani M, Nodehi A. Full factorial design of experiments for preparation of crosslinked dextran microspheres. J Appl Polym Sci 2013; 127(5)3712–24
  • Kotoulas C, Kiparissides C. A generalized population balance model for the prediction of particle size distribution in suspension polymerization reactors. Chem Eng Sci 2006; 61(2)332–46
  • Krstonošić V, Dokić L, Dokić P, Dapčević T. Effects of xanthan gum on physicochemical properties and stability of corn oil-in-water emulsions stabilized by polyoxyethylene (20) sorbitan monooleate. Food Hydrocolloid 2009; 23(8)2212–18
  • Kuriyama M, Ono M, Tokanai H, Konno H. The number of daughter drops formed per breakup of a highly viscous mother-drop in turbulent flow. J Chem Eng Jap 1995; 28(4)477–9
  • Kwon HY, Lee JY, Choi SW, Jang Y, Kim JH. Preparation of PLGA nanoparticles containing estrogen by emulsification-diffusion method. Colloids Surfaces A 2001; 182(1–3)123–30
  • Lagisetty JS, Das PK, Kumar R, Gandhi KS. Breakage of viscous and non-Newtonian drops in stirred dispersions. Chem Eng Sci 1986; 41(1)65–72
  • Li M, Rouaud O, Poncelet D. Microencapsulation by solvent evaporation: State of the art for process engineering approaches. Int J Pharm 2008; 363(1–2)26–39
  • Li BZ, Wang LJ, Li D, Bhandari B, Li SJ, Lan Y, Chen XD, Mao ZH. Fabrication of starch-based microparticles by an emulsification-crosslinking method. J Food Eng 2009; 92(3)250–4
  • Mainardes RM, Evangelista RC. PLGA nanoparticles containing praziquantel: Effect of formulation variables on size distribution. Int J Pharm 2005; 290(1–2)137–44
  • Mason RL, Gunst RF, Hess JL. Statistical design and analysis of experiments. John Wiley and Sons, New York 1989
  • McAffer ICG, Tasko PE, Swift GJ, Gianfrancesco S, 2011. Dry powder inhaler formulations: WO Patent WO/2011/018,531
  • Motlekar N, Youan BB. Optimization of experimental parameters for the production of LMWH-loaded polymeric microspheres. Drug Des Devel Ther 2008; 2: 39–47
  • Murakami H, Kobayashi M, Takeuchi H, Kawashima Y. Evaluation of poly (dl-lactide-co-glycolide) nanoparticles as matrix material for direct compression. Adv Powder Technol 2000; 11(3)311–22
  • Murray J. X-Stat®, Version 2.0: Statistical experimental design, data analysis and nonlinear optimization. John Wiley and Sons, Inc, New York 1992
  • Nambiar DKR, Kumar R, Das TR, Gandhi KS. A new model for the breakage frequency of drops in turbulent stirred dispersions. Chem Eng Sci 1992; 47(12)2989–3002
  • Nepal PR, Chun MK, Choi HK. Preparation of floating microspheres for fish farming. Int J Pharm 2007; 341(1)85–90
  • Oh JK, Drumright R, Siegwart DJ, Matyjaszewski K. The development of microgels/nanogels for drug delivery applications. Prog Polym Sci 2008; 33(4)448–77
  • Oh JK, Lee DI, Park JM. Biopolymer-based microgels/nanogels for drug delivery applications. Prog Polym Sci 2009; 34(12)1261–82
  • Peppas NA, Bures P, Leobandung W, Ichikawa H. Hydrogels in pharmaceutical formulations. Eur J Pharm Biopharm 2000; 50(1)27–46
  • Peppas NA, Hilt JZ, Khademhosseini A, Langer R. Hydrogels in biology and medicine: From molecular principles to bionanotechnology. Adv Mater 2006; 18(11)1345–60
  • Quintanar-Guerrero D, Allémann E, Doelker E, Fessi H. Preparation and characterization of nanocapsules from preformed polymers by a new process based on emulsification-diffusion technique. Pharm Res-Dord 1998; 15(7)1056–62
  • Rajendran A, Thangavelu V. Statistical experimental design for evaluation of medium components for lipase production by Rhizopus arrhizus MTCC, 2233. Lwt-Food Sci Technol 2009; 42(5)985–92
  • Saralidze K, Koole LH, Knetsch MLW. Polymeric microspheres for medical applications. Materials 2010; 3(6)3537–64
  • Seyednejad H, Imani M, Jamieson T, Seifalian AM. Topical haemostatic agents. Brit J Surg 2008; 95(10)1197–225
  • Singh Y. Martin's physical pharmacy and pharmaceutical sciences. The State University of New Jersey, Rutgers 2006
  • Slomkowski S, Basinska T, Miksa B. New types of microspheres and microsphere-related materials for medical diagnostics. Polym Adv Technol 2002; 13(10–12)906–18
  • Soppimath KS, Kulkarni AR, Aminabhavi TM. Controlled release of antihypertensive drug from the interpenetrating network poly(vinyl alcohol)-guar gum hydrogel microspheres. J Biomat Sci-Polym E 2000; 11(1)27–43
  • Yan CH, Resau JH, Hewetson J, West M, Rill WL, Kende M. Characterization and morphological analysis of protein-loaded poly(lactide-co-glycolide) microparticles prepared by water-in oil-in-water emulsion technique. J Control Release 1994; 32(3)231–41
  • Yang YY, Chia HH, Chung TS. Effect of preparation temperature on the characteristics and release profiles of PLGA microspheres containing protein fabricated by double-emulsion solvent extraction/evaporation method. J Control Release 2000; 69(1)81–96
  • Yao RS, Gao WX, Sun J, You YH. Preparation and adsorbability of dextran microspheres with uniform diameter. Chinese J Polym Sci 2005; 23(4) 401–5

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