By S. Handy
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J. (2010). Optimized enzymatic synthesis of caffeic acid phenethyl ester by rsm. N. H. Y. (2001). Effect of caffeic acid phenethyl ester, an antioxidant from propolis, on inducing apoptosis in human leukemic hl-60 cells. J. Agric. Food. ; Bélafi-Bakó, K. & Gubicza, L. (2007). On the background of enhanced stability and reusability of enzymes in ionic liquids. Biochem. Soc. ; Leteurtre, F. & Pommier, Y. (1993). Inhibitors of human immunodeficiency virus integrase. Proc. Natl. Acad. Sci. ; Keoves, E.
16] Grous, W. ; Converse, A. ; Grethlein, H. , Effect of steam explosion pretreatment on pore size and enzymatic hydrolysis of poplar. Enzyme and Microbial Technology 1986, 8 (5), 274-280. ; Dale, B. ; Craig, W. , Comparison of steam and ammonia pretreatment for enzymatic hydrolysis of cellulose. Applied Microbiology and Biotechnology 1988, 29 (5), 462-468.  Chum, H. ; Johnson, D. ; Sarkanen, K. ; Schroeder, H. , Organosolv pretreatment for enzymatic hydrolysis of poplars: I. Enzyme hydrolysis of cellulosic residues.
Thus, methyl caffeate was produced from various caffeoylquinic acids prepared from coffee beans using this procedure. 3. Conversion of methyl caffeate to CAPE analogues with Novozyme 435 In section 2, we described success in converting various caffeoylquinic acids to methyl caffeate with good yields. Next, we tried to convert methyl caffeate to valuable compounds, namely, CAPE analogues, using IL as the reaction solvent (Fig. 5). 1 Selection of lipase for transesterification in IL We initially selected methyl caffeate and 3-cyclohexyl-1-propanol as substrates for comparative study of the enzyme’s performance in [bmim][NTf2].
Applications of Ionic Liquids in Science and Technology by S. Handy