Biosurfactants : production and utilization--processes, by Naim Kosaric, Fazilet Vardar Sukan
By Naim Kosaric, Fazilet Vardar Sukan
''Biosurfactants can effectively substitute and increase the houses of chemically synthesized surface-active brokers. This publication includes forte chapters facing tools for construction of biosurfactants on a laboratory and industrial/commercial scale. It offers novel and confirmed purposes of biosurfactants. the hot version is aimed toward genuine construction and functions of biosurfactants in modern biotechnology, reflecting the advances made because the book of the 1st variation. a distinct bankruptcy is dedicated to the evaluate and review of particular chosen patents in terms of biosurfactants''-- Read more...
summary: ''Biosurfactants can effectively exchange and increase the homes of chemically synthesized surface-active brokers. This publication comprises distinctiveness chapters facing equipment for construction of biosurfactants on a laboratory and industrial/commercial scale. It provides novel and confirmed functions of biosurfactants. the hot variation is aimed toward genuine creation and purposes of biosurfactants in sleek biotechnology, reflecting the advances made because the book of the 1st version. a unique bankruptcy is dedicated to the review and overview of particular chosen patents with regards to biosurfactants''
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Additional resources for Biosurfactants : production and utilization--processes, technologies, and economics
2012) and their claimed effect on the immune response as IgE suppressors (Bluth et al. 2008). This later property decreases pulmonary inflammation in a mouse asthma model and renders them promising anti-inflammatory or antiallergy agents (Hagler et al. 2007). The first report on anticancer properties of sophorolipids was published in the 1990s: sophorolipids trigger cell differentiation instead of proliferation by specific interactions with the plasma membrane for the human promyelocytic leukemia cell line HL60 (Isoda et al.
2007. Sophorolipid biosynthesis by Candida bombicola from industrial fatty acid residues. Enzyme and Microbial Technology 40 (2): 316–323. Fu, S L, S R Wallner, W B Bowne, M D Hagler, M E Zenilman, R Gross, and M H Bluth. 2008. Sophorolipids and their derivatives are lethal against human pancreatic cancer cells. Journal of Surgical Research 148 (1): 77–82. Gao, R, M Falkeborg, X Xu, and Z Guo. 2012. Production of sophorolipids with enhanced volumetric productivity by means of high cell density fermentation.
2013. Proteomic Study of the Sophorolipid Producer Starmerella bombicola. Ghent University, Ghent, Belgium. Ciesielska, K, B Li, S Groeneboer, INA Van Bogaert, Y-C. Lin, W. Soetaert, Y Van de Peer, and B Devreese. 2013. SILAC-based proteome analysis of Starmerella bombicola sophorolipid production. Journal of Proteome Research 12 (10): 4376−4392. Daniel, H J, R T Otto, M Reuss, and C Syldatk. 1998. Sophorolipid production with high yields on whey concentrate and rapeseed oil without consumption of lactose.