SciELO - Scientific Electronic Library Online

 
vol.11 issue1Diversity of bacterial communities in acid mine drainage from the Shen-bu copper mine, Gansu province, ChinaEvaluation of the uniformity and stability of T-DNA integration and gene expression in transgenic apple plants author indexsubject indexsearch form
Home Pagealphabetic serial listing  

Electronic Journal of Biotechnology

On-line version ISSN 0717-3458

Abstract

GOTTEMUKKALA, Vijay V; SARIPELLA, Kalyan K; KADARI, Anil K  and  NEAU, Steven H. Effect of methyl branching of C8H18 alkanes and water activity on lipase-catalyzed enantioselective esterification of ibuprofen. Electron. J. Biotechnol. [online]. 2008, vol.11, n.1, pp. 13-25. ISSN 0717-3458.

The purpose of this research was to study the effect of the methyl branching of a high log P alkane solvent and the water activity in the organic medium on the initial rate and the enantioselectivity of ibuprofen esterification catalyzed by Candida rugosa lipase. Resolution of ibuprofen is important because S-(+)-ibuprofen has the desired pharmacological activity, whereas the R-(-)-enantiomer causes much of the side effects. The Candida rugosa lipase-catalyzed reaction in isooctane at 40ºC and 0.73 water activity gave the best results, both in terms of the initial reaction rate and the enantioselectivity of the reaction. An increase in water activity allowed a higher reaction rate and enantiomeric excess in each of the four solvents. An increase in methyl branching did not necessarily increase the initial reaction rate, but it allowed a higher enantioselectivity, evidenced by an increase in the substrate enantiomeric excess

Keywords : enantioselective; esterification; ibuprofen; lipase; solvent-effect; water activity.

        · text in English     · pdf in English