166
Views
10
CrossRef citations to date
0
Altmetric
Research Article

Submerged electrosprays: A versatile approach for microencapsulation

Pages 430-444 | Received 04 Sep 2006, Accepted 27 Mar 2007, Published online: 08 Oct 2008

References

  • Aguiar MMG, Rodrigues JM, Cunha AS. Encapsulation of insulin-cyclodextrin complex in PLGA microspheres: A new approach for prolonged pulmonary insulin delivery. Journal of Microencapsulation 2004; 21: 553–564
  • Anna SL, Bontoux N, Stone HA. Formation of dispersions using flow focusing in microchannels. Applied Physics Letters 2003; 82: 364–366
  • Barrero A, Lopez-Herrera JM, Boucard A, Loscertales IG, Marquez M. Steady cone-jet electrosprays in liquid insulator baths. Journal of Colloid and Interface Science 2004; 272: 104–108
  • Barrero A, Ganan-Calvo AM, Davila J, Palacio A, Gomez-Gonzalez E. Low and high Reynolds number flows inside Taylor cones. Physical Review E 1998; 58: 7309–7314
  • Barsoum SC, Milgram W, Mackay W, Coblentz C, Delaney KH, Kwiecien JM, Kruth SA, Chang PL. Delivery of recombinant gene product to canine brain with the use of microencapsulation. Journal of Laboratory and Clinical Medicine 2003; 142: 399–413
  • Berkland C, Pollauf E, Pack DW, Kim K. Uniform double walled polymer microspheres of controllable shell thickness. Journal of Control Release 2004; 96: 101–111
  • Calafiore R, Basta G, Luca G, Lemmi A, Racanicchi L, Mancuso F, Montanucci M, Brunetti P. Standard technical procedure for microencapsulation of human islets for graft into nonimmunosuppressed patients with type 1 diabetes mellitus. Transplant Proceedings 2006; 38: 1156–1157
  • Cloupeau M, Prunet-Foch B. Electrohydrodynamic spraying functioning modes: A critical review. Journal of Aerosol Science 1994; 25: 1021–1036
  • Edirisinghe MJ, Jayasinghe SN. Electrohydrodynamic atomization of a concentrated nano-suspension. International Journal of Applied Ceramic Technology 2004; 2: 140–145
  • Fenn JB, Mann M, Meng CK, Wuong SF. Electrospray ionisation for mass spectrometry of large biomolecules. Science 1989; 246: 64–71
  • Hartman RPA, Brunner DJ, Camelot DMA, Marijnissen JCM, Scarlett B. Jet break-up in electrohydrodynamic atomization in the cone-jet mode. Journal of Aerosol Science 2000; 31: 65–95
  • Huikko K, Kostianen R, Kotiaho T. Introduction to micro-analytical systems: Bioanalytical and pharmaceutical applications. European Journal of Pharmaceutical Sciences 2003; 20: 149–171
  • Jaworek A, Krupa A. Classification of the modes of ehd spraying. Journal of Aerosol Science 1999; 30: 873–893
  • Jayasinghe SN, Edirisinghe MJ. Effect of viscosity on the size of relics produced by electrostatic atomization. Journal of Aerosol Science 2002; 33: 1379–1388
  • Jayasinghe SN, Edirisinghe MJ. Jet break-up in nano-suspensions during electrohydrodynamic atomization in the stable cone-jet mode. Journal of Nanoscience and Nanotechnology 2005; 5: 923–926
  • Jayasinghe SN, Qureshi AN, Eagles PAM. Electrohydrodynamic jet processing: An advanced electric-field-driven jetting phenomenon for processing living cells. Small 2006; 2: 216–219
  • Jayasinghe SN, Edirisinghe MJ, Wang DZ. Controlled deposition of nanoparticle clusters by electrohydrodynamic atomization. Nanotechnology 2004; 15: 1519–1523
  • Jayasinghe SN. Self-assembled nanostructures via electrospraying. Physica E: Low-dimensional Systems and Nanostructures 2006; 33: 398–406
  • Krajewska B. Application of chitin- and chitosan-based materials for enzyme immobilizations: A review. Enzyme and Microbial Technology 2004; 53: 126–139
  • Leeuwenburgh SCG, Heine MC, Wolke JGC, Pratsinis SE. Morphology of calcium phosphate coatings for biomedical applications deposited using electrostatic spray deposition. Thin Solid Films 2006; 503: 69–78
  • Leung A, Ramaswamy Y, Munro P, Lawrie G, Nielsen L, Trau M. Emulsion strategies in the microencapsulation of cells: Pathways to thin coherent membranes. Biotechnology and Bioengineering 2005; 92: 45–53
  • Loscertales IG, Barrero A, Guerrero I, Cortijo R, Marquez M, Ganan-Calvo AM. Micro/nano encapsulation via electrified coaxial liquid jets. Science 2002; 295: 1695–1698
  • Magyar JP, Neimir M, Ehler E, Suter N, Perriard J-C, Eppenberger HM. Mass production of embryoid bodies in microbeads. Annals of the New York Academy of Sciences 2001; 944: 135–143
  • Miao P, Balachandran W, Wang JL. Electrostatic generation and theoretical modelling of ultra fine spray of ceramic suspensions for thin film preparation. Journal of Electrostatics 2001; 51–52: 43–49
  • Oh H-J, Kim S-H, Baek J-Y, Seong G-H, Lee S-H. Hydrodynamic micro-encapsulation of aqueous fluids and cells via ‘on the fly’ photo polymerisation. Journal of Micromechanics and Microengineering 2006; 16: 285–291
  • Orive G, Hernandez RM, Gaston AR, Claire R, Chang TMS, de Voss P, Hotelman G, Hinkler G, Lacik I, Pedraz JL. History, challenges and perspectives of cell microencapsulation. Trends in Biotechnology 2004; 22: 87–92
  • Rodrigo B, Luis Sampedro J, Ganan-Calvo AM, Marquez M. Monodispersed structured multi-vesicle microencapsulation using flow-focusing and controlled disturbance. Journal of Microencapsulation 2005; 22: 745–759
  • Sevilla A, Gordillo JM, Martinez-Bazan C. Transition from bubbling to jetting in a coaxial air-water jet. Journal of Physics of Fluids 2005; 17: 018105–1/4
  • Shaikh J, Bhosale R, Singhal R. Microencapsulation of black pepper oleoresin. Food Chemistry 2006; 94: 105–110
  • Taylor GI. Disintegration of water drops in an electric field. Proceedings of the Royal Society A 1964; 280: 383–397
  • Uludag H, De Vos P, Tresco PA. Technology of mammalian cell encapsulation. Advanced Drug Delivery Reviews 2000; 42: 29–64
  • Weber W, Riemann M, Schafroth T, Witschi U, Fussenegger M. Design of high-throughput-compatible protocols for microencapsulation, cryopreservation and release of bovine spermatozoa. Journal of Biotechnology 2006; 123: 155–163
  • Whitesides GM. The origins and the future of microfluids. Nature 2006; 442: 368–373
  • Whitesides GM, Grzybowski G. Self-assembly at all scales. Science 2002; 295: 2418–2421
  • Zeleny J. The electric discharge from liquid points and hydrostatic method of measuring the electric intensity at their surface. Physical Review 1914; 3: 69–91
  • Zhang X, Wang W, Yu W, Xie Y, Zhang X, Zhang Y, Ma X. Development of an in vitro multicellular tumour spheroid model using microencapsulation and its application in anticancer drug screening and testing. Biotechnology Progress 2005; 21: 1289–1296
  • Zhou C, Yue P, Feng JJ. Formation of simple and compound drops in microfluidic devices. Journal of Physics of Fluids 2006; 18: 092105–1/14

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.