Biomedical Engineering Reference
In-Depth Information
Benincasa, M., Abalos, A., Oliveira, I., and Manresa, A. 2004. Chemical structure, surface
properties and biological activities of the biosurfactant produced by Pseudomonas
aeruginosa LBI from soapstock. Antonie van Leeuwenhoek , 85:1-8.
Bernheimer, A.W. and Avigad, L.S. 1970. Nature and properties of a cytolytic agent produced
by Bacillus subtilis . Journal of General Microbiology , 61:361-369.
Besson, F., Chevanet, C., and Michel, G. 1987. Influence of the culture medium on the produc-
tion of iturin A by Bacillus subtilis . Journal of General Microbiology , 133(3):767-772.
Bodour, A.A., Guerrero-Barajas, C., Jiorle, B.V. et al. 2004. Structure and characterization
of flavolipids, a novel class of biosurfactants produced by Flavobacterium sp. strain
MTN11. Applied and Environmental Microbiology , 70:114-120.
Boothroyd, B., Thorn, J.A., and Haskins, R.H. 1956. Biochemistry of the ustilaginales. XII.
Characterization of extracellular glycolipids produced by Ustilago sp. Canadian Journal
of Biochemistry and Physiology , 34:10-14.
Burger, M.M., Glaser, L., and Burton, R.M. 1963. The enzymatic synthesis of a rhamnose-
containing glycolipid by extracts of Pseudomonas aeruginosa . The Journal of Biological
Chemistry , 238(8):2595-2602.
Campos-García, J., Caro, A.D., Nájera, R., Miller-Maier, R.M., Al-Tahhan, R.A., and
Soberón-Chávez, G. 1998. The Pseudomonas aeruginosa rhlG gene encodes an
NADPH-dependent beta-ketoacyl reductase which is specifically involved in rhamno-
lipid synthesis. Journal of Bacteriology , 180(17):4442-51.
Cavalero, D.A. and Cooper, D.G. 2003. The effect of medium composition on the structure
and physical state of sophorolipids produced by Candida bombicola ATCC 22214.
Journal of Biotechnology , 103(1):31-41.
Chen, J., Huang, P.T., Zhang, K.Y., and Ding, F.R. 2012. Isolation of biosurfactant producers,
optimization and properties of biosurfactant produced by Acinetobacter sp. from petro-
leum contaminated soil. Journal of Applied Microbiology , 112:660-671.
Cirigliano, M.C. and Carman, G.M. 1985. Purification and characterization of liposan, a
bioemulsifier from Candida lipolytica . Applied and Environmental Microbiology ,
50(4):846-850.
Cooper, D.G. and Goldenberg, B.G. 1987. Surface-active agents from two Bacillus species.
Applied and Environmental Microbiology , 53(2):224-229.
Cooper, D.G., Liss, S.N., Longay, R., and Zajic, J.E. 1989. Surface activities of Mycobacterium
and Pseudomonas . Journal of Fermentation Technology , 59:97-101.
Cooper, D.G., Macdonald, C.R., Duff, S.J.B., and Kosaric, N. 1981. Enhanced production of
surfactin from Bacillus subtilis by continuous product removal and metal cation addi-
tions. Applied and Environmental Microbiology , 42:408-412.
Cooper, D.G. and Paddock, D.A. 1983. Torulopsis petrophilum and surface activity. Applied
and Environmental Microbiology , 46:1426-1429.
Cooper, D.G., Zajic, J.E., and Gerson, D.F. 1978. Production of surface active lipids by
Corynebacterium lepus . Applied and Environmental Microbiology , 37:4-10.
Cosby, W.M., Vollenbroich, D., Lee, O.H., and Zuber, P. 1998. Altered srf expression in
Bacillus subtilis resulting from changes in culture PH is dependent on the Spo0K
oligopeptide permease and the ComQX system of extracellular control. Journal of
Bacteriology , 180(6):1438-1445.
Cutler, A.J. and Light, R.J. 1979. Regulation of hydroxydocosanoic and sophoroside produc-
tion in Candida bogoriensis by the level of glucose and yeast extract in the growth
medium. The Journal of Biological Chemistry , 254:1944-1950.
Das, P., Mukherjee, S., and Sen, R. 2008a. Genetic regulations of the biosynthesis of microbial
surfactants: An overview. Biotechnology and Genetic Engineering Reviews , 25:165-186.
Das, P., Mukherjee, S., and Sen, R. 2008b. Antimicrobial potential of a lipopeptide biosur-
factant derived from a marine Bacillus circulans . Journal of Applied Microbiology ,
104(6):1675-1684.
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