School of Bioengineering, Jimei University, Xiamen 361021, PR China.
Enzyme Microb Technol. 2011 Jul 10;49(2):167-70. doi: 10.1016/j.enzmictec.2011.04.011. Epub 2011 Apr 22.
Glycerol carbonate was synthesized as biosolvent for the development of soluble enzymatic system. The effects of various reaction parameters on activity and stability of lipases were investigated using the transesterification of ethyl butyrate with n-butanol as a model reaction. Enzymatic activity in glycerol carbonate was compared with that in water and in conventional organic solvents with different ionizing and dissociating abilities. The pK(a) value of trichloroacetic acid and transesterification activities of Candida antarctica lipase B and Candida rugosa lipase in glycerol carbonate are similar to those in water, indicating that ionizing and dissociating powers are capable of satisfactorily predicting the biocompatibility of organic solvents for soluble enzymatic systems.
碳酸甘油酯被合成作为生物溶剂,用于发展可溶酶系统。通过丁酸乙酯与正丁醇的转酯化反应作为模型反应,考察了各种反应参数对脂肪酶活性和稳定性的影响。将碳酸甘油酯中的酶活性与水和具有不同离解能力的常规有机溶剂中的酶活性进行了比较。三氯乙酸的 pK(a) 值和脂肪酶 B 在碳酸甘油酯中的转酯化活性与水相似,表明离解能力能够很好地预测有机溶剂对可溶酶系统的生物相容性。