79
Views
19
CrossRef citations to date
0
Altmetric
ORIGINAL ARTICLE

Ultrasonication enhanced hydrolytic activity of lipase in water/isooctane two-phase systems

, , , &
Pages 189-194 | Received 08 Nov 2004, Published online: 11 Jul 2009

References

  • Bracey E, Stenning RA, Brooker BE. Relating the microstructure of enzyme dispersions in organic solvents to their kinetic behavior. Enzyme Microb Technol 1998; 22: 147–151
  • Bowski L, Saini R, Ryu DY, Vieth WR. Kinetic modeling of the hydrolysis of sucrose by invertase. Biotechnol Bioeng 1971; 13: 641–656
  • Hayashi Y, Talukder MMR, Takeyama T, Wu JC, Kawanishi T, Shimizu N. A kinetic model for enzymatic reaction of lipase in reverse micellar systems involving water-insoluble substrates and enzyme activators. J Chem Technol Biotechnol 2003; 78: 860–864
  • Hayashi Y, Talukder MMR, Wu JC, Takeyama T, Kawanishi T, Shimizu N. Increased activity of Chromobacterium viscosum lipase in AOT reverse micelles in the presence of short chain methoxypolyethylene glycol. J Chem Technol Biotechnol 2001; 76: 844–850
  • Hayes DG, Gulari E. Esterification reactions of lipase in reverse micelles. Biotechnol Bioeng 1990; 35: 793–801
  • Hayes DG, Gulari E. 1-Monoglyceride production from lipase-catalyzed esterification of glycerol and fatty acid in reverse micelles. Biotechnol Bioeng 1990; 38: 507–517
  • Hossain MJ, Takeyama T, Hayashi Y, Kawanishi T, Shimizu N, Nakamura R. Enzymatic activity of Chromobacterium viscosum lipase in an AOT/Tween 85 mixed reverse micellar sysem. J Chem Technol Biotechnol 1999; 74: 423–428
  • James AR. Ultrasound: its chemical, physical, and biological effects. VCH, New York 1988
  • Kang ST, Rhee JS. Characteristics of immobilized lipase-catalyzed hydrolysis of olive oil of high concentration reverse phase system. Biotechnol Bioeng 1989; 33: 1469–1476
  • Kashkoli HA, Rooney JA, Roxby R. Effects of ultrasound on catalase and malate dehydrogenase. J Acoust Soc Am 1980; 67: 1798–1801
  • Khemelnitsky YL, Levashov AV, Klyachko NL, Martinek K. Engineering biocatalytic systems in organic media with low water content. Enzyme Microb Technol 1988; 10: 710–724
  • Kim MK, Rhee JS. Lipid hydrolysis by Pseudomonas putida 3SK cultured in organic-aqueous two-phase system. Enzyme Microb Technol 1993; 15: 612–616
  • Kondo T, Fukushima Y, Kon H, Reisz P. Effect of shear stress and free radicals induced by ultrasound on erythrocytes. Arch Biophys 1989; 269: 381–389
  • Krishnamurthy R, Lumpkin JA, Sridhar R. Inactivation of lysozyme by sonication under conditions relevant to microencapsulation. Int J Pharm 2000; 205: 23–34
  • Li JT, Chen GF, Yang WZ, Li TS. Ultrasound promoted synthesis of 2-aroyl-1,3,5-triaryl-4 carbethoxy-4-cyanocyclohexanols. Ultrasonics Sonochem 2003; 10: 123–126
  • Longo MA, Combes D. Thermo-stability of modified enzymes: a detailed study. J Chem Technol Biotechnol 1999; 74: 25–32
  • Lowry RR, Tinsely IJ. Rapid colorimetric determination of free fatty acids. J Am Oil Chem Soc 1979; 53: 470–472
  • Lyng JG, Allen P, McKenna BM. The effect on aspects of beef tenderness of pre and post-rigor exposure to a high intensity ultrasound probe. J Sci Food Agric 1998; 78: 308–314
  • Mason TJ, Cordmas ED. Ultrasonic intensification of chemical processing and related operations- a review. Transaction of the institute of chemical engineers 1996; 74: 511–516
  • McLean JR, Mortimer AJ. A cavitation and free radical dosimeter for ultrasound. Ultrasound Med Biol 1988; 14: 59–64
  • Meier W. Poly(oxyethylene) adsorption in water/oil microemulsion: A conductivity study. Langmuir 1996; 12: 1188–1192
  • Mills A, Holland C. Effect of ultrasound on the kinetics of oxidation of octan-2-ol and other secondary alcohols with sodium bromate, mediated by ruthenium tetraoxide in a biphasic system. Ultrasonics Sonochemistry 1995; 2: 33–38
  • Mukataka S, Kobayashi T, Sato S, Takahashi J. Enzymatic hydrolysis of fats at high substrate concentrations in biphasic organic-aqueous systems. J Ferment Technol 1987; 65: 23–29
  • Ota H, Yamahara K, Kuboi R. Design of hydrophobic ligands for stabilization of enzyme. Chem Eng Symp Ser 1998; 61: 24–29
  • Rees GD, Robinson BH. Esterification reactions catalyzed by Chromobacterium viscosum lipase in CTAB-based micro-emulsion systems. Biotechnol Bioeng 1995; 45: 344–355
  • Sarcar S, Jain TK, Maitra A. Activity and stability of yeast alcohol dehydrogenase (YADH) entrapped in aerosol OT reverse micelles. Biotechnol Bioeng 1992; 39: 474–478
  • Sinisterra JV. Application of ultrasound to biotechnology: an overview. Ultrasonics 1992; 30: 280–285
  • Talukder MMR, Zaman MM, Hayashi Y, Wu JC, Kawanishi T, Ogino C, Shimizu N. Enzymatic kinetics for lipase-catalyzed hydrolysis of water insoluble substrate in AOT reverse micelles, involving native and activated lipase. J Chem Technol Biotechnol 2004; 79: 273–276
  • Talukder MMR, Hayashi Y, Takeyama T, Zaman MM, Wu JC, Kawanishi T, Shimizu N. Activity and stability of Chromobacterium viscosum lipase in modified AOT reverse micelles. J Mol Catal B: Enzymatic 2003; 22: 203–209
  • Tsai SW, Wu GH, Chiang CL. Kinetic of enzymatic hydrolysis of olive oil in biphasic organic-aqueous system. Biotechnol Bioeng 1991; 38: 761–766
  • Tsai SW, Chiang CL. Kinetics, mechanism and time course analysis of lipase-catalyzed hydrolysis of high concentration olive oil in AOT-isooctane reverse micelles. Biotechnol Bioeng 1991; 38: 206–211
  • Vercet A, Burgos J, Crelier S, Lopez-buesa P. Inactivation of proteases and lipases by ultrasound. Innovative Food Sci Emerging Technol 2001; 2: 139–150
  • Vulfson EN, Sarney DB, Law BA. Enhancement of subtilisin-catalyzed interesterification in organic solvents by ultrasound irradiation. Enzyme Microb Technol 1991; 13: 123–126
  • Walde P, Han D, Luisi PL. Spectroscopic and kinetic studies of lipase solubilized in reverse micelles. Biochem 1993; 32: 4029–4034
  • Wu JC, Ding H, Song BD, Hayashi Y, Talukder MMR, Wang SC. Hydrolytic reaction catalyzed by surfactant-coated Candida rugosa lipase in an organic-aqueous two-phase system. Process Biochem 2003; 39: 233–238

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.