Biomedical Engineering Reference
In-Depth Information
Carrera, P., Cosmina, P., and Grandi, G. 1992. Mutant of B. subtilis and production of surfactin
by use of the mutant. Patent J04299981.
Carrera, P., Cosmina, P., and Grandi, G. 1993a. Mutant of Bacillus subtilis . US Patent 5264363.
Carrera, P., Cosmina, P., and Grandi, G. 1993b. Method of producing surfactin with the use of
Bacillus subtilis . US Patent 5227294.
Chelardi, E., Salvetti, S., Ceraglioli, M., Gueye, S.A., Calandroni, F., and Senesi, S.
2012. Contribution of surfactin and SwrA to flagellin expression, swimming and
surface mobility in Bacillus subtilis. Applied and Environmental Microbiology
78: 6540-6544.
Chen, C.Y., Baker, S.C., and Darton, R.C. 2006a. Batch production of biosurfactant with foam
fractionation. Journal of Chemical Technology and Biotechnology 81: 1923-1931.
Chen, C.Y., Baker, S.C., and Darton, R.C. 2006b. Continuous production of biosurfactant with
foam fractionation. Journal of Chemical Technology and Biotechnology 81: 1915-1922.
Chen, H.L., Chen, Y.S., and Juang, R.S. 2007. Separation of surfactin from fermentation
broths by acid precipitation and two-stage dead-end ultrafiltration processes. Journal of
Membrane Science 299: 114-121.
Chen, H.L., Chen, Y.S., and Juang, R.S. 2008a. Flux, decline and membrane cleaning in cross-
flow ultrafiltration of treated fermentation broths for surfactin recovery. Separation and
Purification Technology 62: 47-55.
Chen, H.L., Chen, Y.S., and Juang, R.S. 2008b. Purification of surfactin in pretreated fermen-
tation broths by adsorptive removal of impurities. Biochemical Engineering Journal
40: 452-459.
Chen, H.L., Chen, Y.S., and Juang, R.S. 2008c. Recovery of surfactin from fermentation broths
by a hybrid salting-out and membrane filtration process. Separation and Purification
Technology 59: 244-255.
Chenikher, S., Guez, J.S., Coutte, F., Pekpe, M., Jacque, P., and Cassar, J.P. 2010. Control of
the specific growth rate of Bacillus subtilis for the production of biosurfactant lipopep-
tides in bioreactors with foam overflow. Process Biochemistry 45: 1800-1807.
Chtioui, O., Dimitrov, K., Gancel, F., Dhuslter, P., and Nikov, I. 2012. Rotating discs bioreac-
tor: A new tool for lipopeptides production. Process Biochemistry 47: 2020-2024.
Cooper, D.G. 1986. Biosurfactants. Microbiological Science 3: 145-149.
Cooper, D.G., Macdonald, C.R., Duff, J.P., and Kosaric, N. 1981. Enhanced production of sur-
factin from Bacillus subtilis by continuous product removal and metal cation additions.
Applied and Environmental Microbiology 42: 408-412.
Cooper, D.G., Pillon, D.W., Mulligan, C.N., and Sheppard, J.D. 1986. Biological additives for
improved mechanical dewatering of fuel-grade peat. Fuel 65: 255-259.
Dae, K.S., Cho, J.Y., Park, H.J., Lim, C.R., Lim, J.-H. Yun, H.I., Park, S.C., Kim, S.K.,
and Rhee, M.H. 2006. A comparison of the anti-inflammatory activity of surfac-
tin A, B, C and D from B. subtilis. Journal of Microbiology and Biotechnology
16: 1656-1659.
Das, P., Mukjerjee, S., and Sen, R. 2008. Antimicrobial potential of a lipopeptide biosurfac-
tant derived from a marine Bacillus circulans. Journal of Applied Microbiology 104:
1675-1684.
Das, P., Mukherjee, S., and Sen, R. 2009. Substrate dependent production of biosurfactants
from a marine bacterium. Bioresource Technology 100: 1015-1019.
Davis, D.A., Lynch, H.C., and Varley, J. 1999. The production of surfactin in batch culture
by Bacillus subtilis ATCC 21332 is strongly influenced by the conditions of nitrogen
metabolism. Enzyme and Microbial Technology 25: 322-329.
Davis, D.A., Lynch, H.C., and Varley, J. 2001. The application of foaming for the recovery
of surfactin from B. subtilis ATCC 21332 cultures. Enzyme and Microbial Technology
28: 346-354.
Search WWH ::




Custom Search