Improvement of Steroid Biotransformation with Hydroxypropyl-β-Cyclodextrin Induced Complexation

The inclusion complexes induced by cyclodextrins and its derivates have been shown previously to enhance the biotransformation of hydrophobic compounds. Using hydroxypropyl-β-cyclodextrin (HP-β-CD; 20% w / v ), the water solubility of cortisone acetate increased from 0.039 to 7.382 g L −1 at 32 °C....

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Veröffentlicht in:Applied biochemistry and biotechnology 2009-12, Vol.159 (3), p.642-654
Hauptverfasser: Zhang, Liting, Wang, Min, Shen, Yanbing, Ma, Yinhu, Luo, Jianmei
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Sprache:eng
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Zusammenfassung:The inclusion complexes induced by cyclodextrins and its derivates have been shown previously to enhance the biotransformation of hydrophobic compounds. Using hydroxypropyl-β-cyclodextrin (HP-β-CD; 20% w / v ), the water solubility of cortisone acetate increased from 0.039 to 7.382 g L −1 at 32 °C. The solubilization effect of HP-β-CD was far superior to dimethylformamide (DMF) and ethanol. The dissolution rate also significantly increased in the presence of HP-β-CD. The enzymatic stability of Δ 1 -dehydrogenase from Arthrobacter simplex TCCC 11037 was not influenced by the increasing concentrations of HP-β-CD contrary to the organic cosolvents which negatively influenced in the order DMF > ethanol. The activity inhibition effect caused by HP-β-CD was not so conspicuous as ethanol and DMF. Inactivation constants of ethanol, DMF, and HP-β-CD were 5.832, 4.541, and 1.216, respectively. The inactivation energy ( E a ) was in the order of HP-β-CD (55.1 kJ mol −1 ) > ethanol (39.9 kJ mol −1 ) > DMF (37.1 kJ mol −1 ).
ISSN:0273-2289
1559-0291
DOI:10.1007/s12010-008-8499-2