Russo P, De Maio A, D'Acunzo A, Garofalo A, Bencivenga U, Rossi S, Annicchiarico R, Gaeta F S, Mita D G
International Institute of Genetics and Biophysics, CNR, Naples, Italy.
Res Microbiol. 1997 Mar-Apr;148(3):271-81. doi: 10.1016/S0923-2508(97)85247-3.
The beta-galactosidase activity of Kluyveromyces fragilis cells immobilized in a kappa carrageenan gel was studied in a bioreactor functioning under isothermal and non-isothermal conditions. We observed an increase in enzyme activity which was found to be proportional to the intensity of the temperature gradient applied across the biocatalytic membrane, as well as to the average temperature of the bioreactor. The efficiency of such a non-isothermal bioreactor was calculated with respect to the yield of a bioreactor working under comparable isothermal conditions and was evaluated in terms of reduction of processing times in industrial applications. The possibility that enzyme activity in living cells is affected by non-isothermal conditions naturally existing owing to metabolic heat production is also discussed.
研究了固定在κ-卡拉胶凝胶中的脆壁克鲁维酵母细胞的β-半乳糖苷酶活性,该研究在等温及非等温条件下运行的生物反应器中进行。我们观察到酶活性增加,发现其与跨生物催化膜施加的温度梯度强度以及生物反应器的平均温度成正比。相对于在可比等温条件下运行的生物反应器的产率,计算了这种非等温生物反应器的效率,并根据工业应用中处理时间的减少进行了评估。还讨论了由于代谢产热自然存在的非等温条件影响活细胞中酶活性的可能性。