TY - JOUR
T1 - Efficient Lipase-catalyzed Preparation of Long-chain Fatty Acid Esters of Bile Acids
T2 - Biological Activity and Synthetic Application of the Products
AU - Sugai, Takeshi
AU - Takizawa, Masahiro
AU - Bakke, Mikio
AU - Ohtsuka, Yoshikazu
AU - Oht, Hiromichi
PY - 1996/1
Y1 - 1996/1
N2 - A highly regioselective (3-position) and efficient (quantitative yield) acylation of bile acids catalyzed by immobilized Candida antarctica lipase was established. Methyl cholate derivatives acylated with long-chain fatty acids (C12–C16) showed an inhibitory effect on the growth of some strains of Gram-positive and -negative bacteria (27–400μg/ml). The anti-bacterial activity was slightly weaker than has been observed for methyl cholate, while the increased lipophilicity and lower melting points of the present derivatives are well suited for a potential germicide which would be safe and be topically applied. This enzyme-catalyzed transesterification is also demonstrated as an expeditious route to ursodeoxycholic acid, in respect of the regioselective introduction of acyl protecting groups on the hydroxyl groups of the intermediates. 7-Ketolithocholic acid, a known direct precursor of ursodeoxycholic acid, was obtained from cholic acid via chenodeoxycholic acid in a 46% yield and 9 steps.
AB - A highly regioselective (3-position) and efficient (quantitative yield) acylation of bile acids catalyzed by immobilized Candida antarctica lipase was established. Methyl cholate derivatives acylated with long-chain fatty acids (C12–C16) showed an inhibitory effect on the growth of some strains of Gram-positive and -negative bacteria (27–400μg/ml). The anti-bacterial activity was slightly weaker than has been observed for methyl cholate, while the increased lipophilicity and lower melting points of the present derivatives are well suited for a potential germicide which would be safe and be topically applied. This enzyme-catalyzed transesterification is also demonstrated as an expeditious route to ursodeoxycholic acid, in respect of the regioselective introduction of acyl protecting groups on the hydroxyl groups of the intermediates. 7-Ketolithocholic acid, a known direct precursor of ursodeoxycholic acid, was obtained from cholic acid via chenodeoxycholic acid in a 46% yield and 9 steps.
KW - Antibacterial activity
KW - Bile acid
KW - Candida antarctica lipase
KW - Transesterification
KW - Ursodeoxycholic acid
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UR - http://www.scopus.com/inward/citedby.url?scp=0030427785&partnerID=8YFLogxK
U2 - 10.1271/bbb.60.2059
DO - 10.1271/bbb.60.2059
M3 - Article
C2 - 8988639
AN - SCOPUS:0030427785
SN - 0916-8451
VL - 60
SP - 2059
EP - 2063
JO - Bioscience, Biotechnology and Biochemistry
JF - Bioscience, Biotechnology and Biochemistry
IS - 12
ER -