Article ID Journal Published Year Pages File Type
601492 Colloids and Surfaces B: Biointerfaces 2010 8 Pages PDF
Abstract

Acid phosphatase was immobilized on layered double hydroxides of uncalcined- and calcined-Mg/Al-CO3 (Unc-LDH-CO3, C-LDH-CO3) by the means of direct adsorption. Optimal pH and temperature for the activity of free and immobilized enzyme were exhibited at pH 5.5 and 37 °C. The Michaelis constant (Km) for free enzyme was 1.09 mmol mL−1 while that for immobilized enzyme on Unc-LDH-CO3 and C-LDH-CO3 was increased to 1.22 and 1.19 mmol mL−1, respectively, indicating the decreased affinity of substrate for immobilized enzymes. The residual activity of immobilized enzyme on Unc-LDH-CO3 and C-LDH-CO3 at optimal pH and temperature was 80% and 88%, respectively, suggesting that only little activity was lost during immobilization. The deactivation energy (Ed) for free and immobilized enzyme on Unc-LDH-CO3 and C-LDH-CO3 was 65.44, 35.24 and 40.66 kJ mol−1, respectively, indicating the improving of thermal stability of acid phosphatase after the immobilization on LDH-CO3 especially the uncalcined form. Both chemical assays and isothermal titration calorimetry (ITC) observations implied that hydrolytic stability of acid phosphatase was promoted significantly after the immobilization on LDH-CO3 especially the calcined form. Reusability investigation showed that more than 60% of the initial activity was remained after six reuses of immobilized enzyme on Unc-LDH-CO3 and C-LDH-CO3. A half-life (t1/2) of 10 days was calculated for free enzyme, 55 and 79 days for the immobilized enzyme on Unc-LDH-CO3 and C-LDH-CO3 when stored at 4 °C. Therefore, immobilization of acid phosphatase on Unc-LDH-CO3 and C-LDH-CO3 by direct adsorption is an effective means and would have promising potential for the practical application in agricultural production and environmental remediation.

Related Topics
Physical Sciences and Engineering Chemical Engineering Colloid and Surface Chemistry
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