Salis Andrea, Meloni Daniela, Ligas Stefania, Casula Maria F, Monduzzi Maura, Solinas Vincenzo, Dumitriu Emil
Department of Chemical Sciences, University of Cagliari, S.S. 554 Bivio Sestu 09042 Monserrato (CA), Italy.
Langmuir. 2005 Jun 7;21(12):5511-6. doi: 10.1021/la047225y.
In this work a sample of SBA-15 mesoporous silica was synthesized and characterized by TEM, XRD, and N2 adsorption. The sample had a high value of specific surface area (1007 m2 g(-1)) and total pore volume (2.1 cm3 g(-1)). The pore diameter was 67 angstroms, so it was large enough to accommodate protein molecules inside the channels. Immobilization by physical adsorption of a commercial lipase preparation from Mucor javanicus was performed at different pH values (pH 5-8). pH 6 gave the highest lipase loading and hydrolytic activity of the corresponding biocatalyst. Chemical modification of the SBA-15 via glutardialdehyde allowed also the enzyme immobilization through chemical adsorption. This preparation was active toward tributyrin hydrolysis. On the contrary, very low activity toward triolein hydrolysis was observed. The reduction of the size of the channels due the immobilization process has been suggested as a possible explanation.
在这项工作中,合成了SBA - 15介孔二氧化硅样品,并通过透射电子显微镜(TEM)、X射线衍射(XRD)和N₂吸附进行了表征。该样品具有较高的比表面积(1007 m² g⁻¹)和总孔体积(2.1 cm³ g⁻¹)。孔径为67埃,足以在通道内容纳蛋白质分子。在不同pH值(pH 5 - 8)下,通过物理吸附来自爪哇毛霉的商业脂肪酶制剂进行固定化。pH 6时,相应生物催化剂的脂肪酶负载量和水解活性最高。通过戊二醛对SBA - 15进行化学修饰,也可以通过化学吸附固定酶。该制剂对三丁酸甘油酯水解具有活性。相反,观察到对三油酸甘油酯水解的活性非常低。固定化过程导致通道尺寸减小被认为是一种可能的解释。