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Journal of Microencapsulation

Y. (2010). Microencapsulation techniques, factors influencing encapsulation efficiency. Journal of Microencapsulation, Vol. 27, 3, (June 2010), pp. (187-197), ISSN... [Pg.81]

Lavasanifar, A., Ghalandari, R., Ataei, Z., Zolfaghari, M.E. and Mortazavi, S.A. (1997) Microencapsulation of theophylline using ethylcellulose in vitro drug release and kinetic modelling. Journal of Microencapsulation, 14, 91-100. [Pg.173]

Chen, H Wu, J.-C. and Chen, H.-Y. (1995) Preparation of ethylcellulose microcapsules containing theophylline by using emulsion non-solvent addition method. Journal of Microencapsulation, 12, 137-147. [Pg.173]

Price, R., Gaber, B. and Lvov, Y. (2001) In-vitro release characteristics of tetracycline, khellin and nicotinamide adenine dinudeotide from halloysite a cylindrical mineral for delivery of biologically active agents. Journal of Microencapsulation, 18, 713—723. [Pg.439]

Cortesi, R., Esposito, E., Gambarin, S., Telloli, P., Menegatti, E., and Nastruzzi, C., Preparation of liposomes by reverse-phase evaporation using alternative organic solvents, Journal of Microencapsulation, 1999, 16, 251-256. [Pg.15]

Dingier, A., and Gohla, S., Production of solid lipid nanoparticles (SLN) scaling up feasibilities, Journal of Microencapsulation, 2002, 19, 11-16. [Pg.17]

Vuillemard, J.C. (1991). Recent advances in the large-scale production of lipid vesicles for use in food products microfluidization. Journal of Microencapsulation, 8, 547-562. [Pg.30]

Desai, K.G., Park, H.J. (2005). Encapsulation of vitamin C in tripolyphosphate cross-linked chitosan microspheres by spray drying. Journal of Microencapsulation, 2, 179-192. [Pg.71]

Levy, M.C., Edwards-Levy, F. (1996). Coating alginate beads with cross-linked biopolymers a novel method based on a transacylation reaction. Journal of Microencapsulation, 13, 169-183. [Pg.74]

Coester, C.J., Langer, K., van Briesen, H., and Kreuter, J. (2000) Gelatin nanoparticles by two step desolvation - a new preparation method, surface modifications and cell uptake. Journal of Microencapsulation 17 187-193. [Pg.29]

Journal of Microencapsulation 18, No.6, Nov./Dec. 2001, p.801-9 MORPHOLOGY AND STRUCTURE OF MICROCAPSULES PREPARED BY INTERFACIAL POLYCONDENSATION OF METHYLENE BIS(PHENYL ISOCYANATE) WITH HEXAMETHYLENE DIAMINE Jabbari E... [Pg.61]

Schwarz, C. and Mehnert, W., Solid lipid nanoparticles (SLN) for controlled drug delivery. II. Drug incorporation and physicochemical characterization, Journal of Microencapsulation, 1999, 16, 205-213. [Pg.19]

Kim, B.K. Hwang, S.J. Park, J.B. Park, H.J. Preparation and characterization of drug-loaded microspheres by an emulsion solvent evaporation method. Journal of Microencapsulation 19, 811-822, 2002. [Pg.15]

Serfert Y, Schroder J, Mescher A et al. (2013) Characterisation of the spray-drying behavior of emulsions containing oil drop-lets with a structured interface. Journal of Microencapsulation 30 325-334. [Pg.44]

Hogan SA, O Riordan ED, O Sullivan M (2003) Microencapsulation and oxidative stability of spray-dried fish oil emulsions. Journal of Microencapsulation 20 675-688. [Pg.45]

M. Whelehan and 1. W. Marison. Microencapsulation using vibrating technology. Journal of Microencapsulation, 28(8) 669-688, December 2011. [Pg.109]

S. Koch, C. Schwinger, J. Kressler, C. Heinzen, and N. G. Rainov. Alginate encapsulation of genetically engineered mammalian cells Comparison of production devices, methods and microcapsule characteristics. Journal of Microencapsulation, 20(3) 303-316, 2003. [Pg.197]

Gundogdu E, Karasulu HY, Koksal C, and Karasulu E. (2013). The novel oral imatinib microemulsions Physical properties, cytotoxicity activities and improved Caco-2 cell permeability. Journal of Microencapsulation, 30, 132-142. [Pg.270]

Persico, P. Carfagna, C. Danicher, L. Frere, Y. Polyamide microcapsules containing jojoba oil prepared by inter-facial polymerization. Journal of Microencapsulation (2005), 22(5), 471-486. [Pg.303]

Jaworek, A. Electrostatic micro- and nanoencapsulation and electroemulsification A brief review. Journal of Microencapsulation 25(7) (2008) 443-468. [Pg.434]

Detoni, C. B., Cabral-Albuquerque, E. C. M., Hohlemweger, S. V. A., Samapio, C., Barros, T. R, and Velozo, E. S. (2009). Essential oil from Zanthoxylum tingoassuiba loaded into multUamellar liposomes useful as antimicrobial agenk. Journal of Microencapsulation, 26, 684—691. [Pg.900]

Yoshida, P. A., Yokota, D., Foglio, M. A., Rodrigues, R. A. R, and Pinho, S. C. (2010). Liposomes incorporating essential oil of Brazilian cherry (Eugenia uniflora L.) Characterization of aqueous dispersions and lyophilized formulations. Journal of Microencapsulation, 27, 416-425. [Pg.906]

Arica B, Arica MY, Kas HS, Hincal AA, Hasirci V. In-vitro studies of enteric coated diclofenac sodium-carboxymethylcellulose microspheres. Journal of Microencapsulation. November-December 1996 13(6) 689-699. PubMed PMID 8933354. Epub 1996/11/01. eng. [Pg.1014]

Stithit S, Chen W, Price JC. Development and characterization of buoyant theophyUine micro-spheres with near zero order release kinetics. Journal of Microencapsulation. November-December 1998 15(6) 725-737. PubMed PMID 9818950. [Pg.1015]

Vilivalam VD, Adeyeye CM. Development and evaluation of controlled-release diclofenac microspheres and tabletted microspheres. Journal of Microencapsulation. July-August 1994 11(4) 455—470. PubMed PMID 7931945. [Pg.1015]

Hu L, Zhang H, Song W. An overview of preparation and evaluation sustained-release injectable micro-spheres. Journal of Microencapsulation. 2013 30(4) 369-382. PubMed PMID 23140260. [Pg.1016]

Obeidat WM, Price JC. Evaluation of enteric matrix microspheres prepared by emulsion-solvent evaporation using scanning electron microscopy. Journal of Microencapsulation. February 2004 21(l) 47-57. PubMed PMID 14718185. [Pg.1016]

Leach K, Noh K, Mathiowitz E. Effect of manufacturing conditions on the formation of double-walled polymer microspheres. Journal of Microencapsulation. March-April 1999 16(2) 153-167. PubMed PMID 10080110. [Pg.1017]

Kentepozidou A, Kiparissides C. Production of water-containing polymer microcapsules by the complex emulsion/solvent evaporation technique. Effect of process variables on the microcapsule size distribution. Journal of Microencapsulation. November-December 1995 12(6) 627—638. PubMed PMID 8558385. [Pg.1017]

Gabor F, Ertl B, Wirth M, Mallinger R. Ketoprofen-poly(D,L-lactic-co-glycolic add) microsphetes Influence of manufacturing parameters and type of polymer on the release characteristics. Journal of Microencapsulation. January-February 1999 16(1) 1-12. PubMed PMID 9972498. [Pg.1017]

Bodmeier R, McGinity JW. Polylactic acid microspheres containing quinidine base and quinidine sulphate prepared by the solvent evaporation technique. I. Methods and morphology. Journal of Microencapsulation. October-December 1987 4(4) 279-288. PubMed PMID 3504509. [Pg.1017]

Jalil R, Nixon JR. Microencapsulation using poly(L-lactic acid). I Microcapsule properties affected by the preparative technique. Journal of Microencapsulation. October-December 1989 6(4) 473-484. PubMed PMID 2585239. [Pg.1020]

Obeidat WM, Price JC. Viscosity of polymer solution phase and other factors controlling the dissolution of theophylhne microspheres prepared by the emulsion solvent evaporation method. Journal of Microencapsulation. January-February 2003 20(l) 57-65. PubMed PMID 12519702. Epub 2003/01/10. eng. [Pg.1020]

Bolourtchian N, Karimi K, Aboofazeli R. Preparation and characterization of ibuprofen microspheres. Journal of Microencapsulation. August 2005 22(5) 529-538. PubMed PMID 16361196. [Pg.1020]


See other pages where Journal of Microencapsulation is mentioned: [Pg.162]    [Pg.162]    [Pg.206]    [Pg.496]    [Pg.16]    [Pg.197]    [Pg.302]    [Pg.302]    [Pg.305]    [Pg.311]    [Pg.794]   
See also in sourсe #XX -- [ Pg.39 ]




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