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Research Article

Controlling the morphology and material characteristics of electrospray generated calcium alginate microhydrogels

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Pages 605-612 | Received 13 Apr 2016, Accepted 22 Aug 2016, Published online: 07 Sep 2016

References

  • Al-Mayah AMR. Simulation of enzyme catalysis in calcium alginate beads. Enzyme Res, 2012;2012. doi:10.1155/2012/459190.
  • Anbinder PS. Yerba mate extract encapsulation with alginate and chitosan systems: Interactions between active compound encapsulation polymers. JEAS, 2011;1(04):80–7.
  • Antosiak-Iwariska M, Sitarek E, Sabat M, Godlewska E, Kinasiewicz J, Weryński A. Isolation, banking, encapsulation and transplantation of different types of Langerhans islets. Pol Arch Med Wewn, 2009;119(5):311–17.
  • Bajpai SK, Sharma S. Investigation of swelling/degradation behaviour of alginate beads crosslinked with Ca2+ and Ba2+ ions. React Func Polym, 2004;59(2):129–40.
  • Belščak-Cvitanović A, Komesa D, Karlovića S, Djakovića S, Špoljarićb I, Mršićb G, Ježeka D. Improving the controlled delivery formulations of caffeine in alginate hydrogel beads combined with pectin, carrageenan, chitosan and psyllium. Food Chem, 2015;167:378–86.
  • Bohr A, Bohr A, Kristensen J, Stride E, Dyas M, Edirisinghe M. Preparation of microspheres containing low solubility drug compound by electrohydrodynamic spraying. Int J Pharm, 2011;412(1–2):59–67.
  • Chakraborty S, Liao IC, Adler A, Leong KW. Electrohydrodynamics: A facile technique to fabricate drug delivery systems. Adv Drug Deliv Rev, 2009;61(12):1043–54.
  • Charles-Navarro D, Bocanegra-García V, Palos I, Rivera G, Esquivel-Ferriño P, Gracia-Vásquez S, Ortiz-Andrade R, Quiroz-Velásquez J, Hernández-Mendoza JL. Encapsulation and release characteristics of glibenclamide loaded calcium-alginate beads. Quím Nova, 2010;33(7):1435–9.
  • Choi SW, Cheong IW, Kim JH, Xia Y. Preparation of uniform microspheres using a simple fluidic device and their crystallization into close-packed lattices. Small, 2009;5(4):454–9.
  • Davidovich-Pinhas M, Bianco-Peled H. A quantitative analysis of alginate swelling. Carbohydr Polym, 2010;79(4):1020–7.
  • Embuscado M, Huber K. 2009. Edible fimls and coatings for food applications. New York, NY: Springer.
  • Fontes GC, Calado VMA, Rossi AM, Rocha-Leão MHM. Characterization of antibiotic-loaded alginate-osa starch microbeads produced by ionotropic pregelation. BioMed Res Int, 2013;2013. doi:10.1155/2013/472626.
  • Ghayempour S, Mortazavi SM. Fabrication of micro–nanocapsules by a new electrospraying method using coaxial jets and examination of effective parameters on their production. J Electrostat, 2013;71(4):717–27.
  • Gomez-Estaca J, Balaguear MP, Gavara R, Hernandez-Munoz P. Formation of zein nanoparticles by electrohydrodynamic atomisation: Effect of the main processing variables and suitability for encapsulating the food colouring and active ingredient curcumin. Food Hydrocoll, 2012;28(1):82–91.
  • Gulrez SK, Al-Assaf S, Phillips GO. 2011. Hydrogels: Methods of preparation, characterisation and applications in molecular and environmental bioengineering. Rijeka, Croatia: INTECH.
  • Hartman RPA, Brunner DJ, Camelot DMA, Marijnissen JMC, Scarlett B. Jet break-up in electrohydrodynamic atomization in the cone-jet mode. J Aerosol Sci, 2000;31(1):65–95.
  • Hershko V, Nussinovitch A. The behavior of hydrocolloid coatings on vegetative materials. Biotechnol Prog, 1998;14(5):756–65.
  • Hurler J, Engesland A, Kermany BP. Improved texture analysis for hydrogel characterization: Gel cohesiveness, adhesiveness, and hardness. J Appl Polym Sci, 2012;125(1):180–8.
  • Jaworek A, Sobczyk AT. Electrospraying route to nanotechnology: An overview. J Electrostat, 2008;66(3–4):197–219.
  • Lee KY, Mooney DJ. Alginate: Properties and biomedical applications. Prog Polym Sci (Oxford), 2012;37(1):106–26.
  • Lee P, Rogers MA. Effect of calcium source and exposure-time on basic caviar spherification using sodium alginate. Int J Gastro Food Sci, 2012;1(2):96–100.
  • Mandal S, Basu SK, Sa B. Sustained release of a water-soluble drug from alginate matrix tablets prepared by wet granulation method. AAPS PharmSciTech, 2009;10(4):1348–56.
  • Manjanna KM, Pramod Kumar TM, Shivakumar B. Calcium alginate cross-linked polymeric microbeads for oral sustained drug delivery in arthritis. Drug Discov Ther, 2010;4(2):109–22.
  • Manjanna KM, Rajesh KS, Shivakumar B. Formulation and optimization of natural polysaccharide hydrogel microbeads of aceclofenac sodium for oral controlled drug delivery. AJMSM, 2013;1(1):5–17.
  • Martinsen A, Skjåk-Braek G, Smidsrød O. Alginate as immobilization material: I. Correlation between chemical and physical properties of alginate gel beads. Biotechnol Bioeng, 1989;33(1):79–89.
  • Moebus K, Siepmann J, Bodmeier R. Novel preparation techniques for alginate-poloxamer microparticles controlling protein release on mucosal surfaces. Eur J Pharm Sci, 2012;45(3):358–66.
  • Nedović VA. Obradovic B, Leskošek-Čukalović I, Trifunović O, Pešić R, Branko V. Electrostatic generation of alginate microbeads loaded with brewing yeast. Process Biochem, 2001;37(1):17–22.
  • Oberyukhtina I, Bogolitsyn K, Popova N. Physicochemical properties of solutions of sodium alginate extracted from brown algae Laminaria digitata. Russ J Appl Chem, 2001;74(10):1645–9.
  • Ouwerx C, Verlings N, Mestdagh MM, Axelos MAV. Physico-chemical properties and rheology of alginate gel beads formed with various divalent cations. Polym Gel Netw, 1998;6(5):393–408.
  • Paques JP, van der Linden E, van Rijn CJ, Sagis LM. Alginate submicron beads prepared through w/o emulsification and gelation with CaCl2 nanoparticles. Food Hydrocoll, 2013;31(2):428–34.
  • Paques JP, van der Linden E, van Rijn CJ, Sagis LM. Preparation methods of alginate nanoparticles. Adv Colloid Interface Sci, 2014;209:163–71.
  • Park H, Kim PH, Hwang T, Kwon OJ, Park TJ, Choi SW, Yun CO, Kim JH. Fabrication of cross-linked alginate beads using electrospraying for adenovirus delivery. Int J Pharm, 2012;427(2):417–25.
  • Pasparakis G, Bouropoulos N. Swelling studies and in vitro release of verapamil from calcium alginate and calcium alginate-chitosan beads. Int J Pharm, 2006;323(1–2):34–42.
  • Poncelet D, Neufeld RJ, Goosen MFA, Burgarski B, Babak V. Formation of microgel beads by electric dispersion of polymer solutions. AIChE J, 1999;45(9):2018–23.
  • Rayleigh L. On the equilibrium of liquid conducting masses charged with electricity. Phil Mag Ser 5, 1882;14(87):184–6.
  • Rayleigh L. On the instability of jets. Proc London Math Soc, 1878;10:4–13.
  • Sarmento B, Ferreira D, Veiga F, Ribeiro A. Characterization of insulin-loaded alginate nanoparticles produced by ionotropic pre-gelation through DSC and FTIR studies. Carbohydr Polym, 2006;66(1):1–7.
  • Simpliciano C, Clark L, Asi B, Chu N, Mercado M, Diaz S, Goedert M, Mobed-Miremadi M. Cross-linked alginate film pore size determination using atomic force microscopy and validation using diffusivity. J Surf Eng Mater Adv Technol, 2013;3:1–12.
  • Stranger J, Tucker N, Kirwan K, Coles S, Jacobs D, Staiger MP. Effect of charge density on the Taylor cone in electrospinning. Int J Mod Phys B, 2009;23:1956–61.
  • Stutz H, Illers KH, Mertes J. Generalized theory for the glass transition temperature of crosslinked and uncrosslinked polymers. J Polym Sci B Polym Phys, 1990;28(9):1483–98.
  • Suksamran T, Opanasopit P, Rojanarata T, Ngawhirunpat T, Ruktanonchai U, Supaphol P. Biodegradable alginate microparticles developed by electrohydrodynamic spraying techniques for oral delivery of protein. J Microencapsul, 2009;26(7):563–70.
  • Tang K, Gomez A. Monodisperse electrosprays of low electric conductivity liquids in the cone-jet mode. J Colloid Interface Sci, 1996;184(2):500–11.
  • de Vos P, Faas MM, Strand B, Calafiore R. Alginate-based microcapsules for immunoisolation of pancreatic islets. Biomaterials, 2006;27(32):5603–17.
  • Watanabe H, Matsuyama T, Yamamoto H. Experimental study on electrostatic atomization of highly viscous liquids. J Electrostat, 2003;57(2):183–97.
  • Xie J, Wang CH. Electrospray in the dripping mode for cell microencapsulation. J Colloid Interface Sci, 2007;312(2):247–55.
  • Zhang S, Shang W, Yang X, Zhang S, Zhang X, Chen J. Immobilization of lipase using alginate hydrogel beads and enzymatic evaluation in hydrolysis of p-nitrophenol butyrate. Bull Korean Chem Soc, 2013;34(9):2741–6.

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