Pliego Jorge, Mateos Juan Carlos, Rodriguez Jorge, Valero Francisco, Baeza Mireia, Femat Ricardo, Camacho Rosa, Sandoval Georgina, Herrera-López Enrique J
Biotecnología Industrial, Centro de Investigación y Asistencia en Tecnología y Diseño del Estado de Jalisco A.C., Avenida Normalistas 800, Colinas de la Normal. C.P. 44270, Guadalajara Jalisco, Mexico.
Departament d'Enginyeria Química, Escola d'Enginyeria, Universitat Autònoma de Barcelona, 08193 Bellaterra, Barcelona, Spain.
Sensors (Basel). 2015 Jan 27;15(2):2798-811. doi: 10.3390/s150202798.
Lipases and esterases are biocatalysts used at the laboratory and industrial level. To obtain the maximum yield in a bioprocess, it is important to measure key variables, such as enzymatic activity. The conventional method for monitoring hydrolytic activity is to take out a sample from the bioreactor to be analyzed off-line at the laboratory. The disadvantage of this approach is the long time required to recover the information from the process, hindering the possibility to develop control systems. New strategies to monitor lipase/esterase activity are necessary. In this context and in the first approach, we proposed a lab-made sequential injection analysis system to analyze off-line samples from shake flasks. Lipase/esterase activity was determined using p-nitrophenyl butyrate as the substrate. The sequential injection analysis allowed us to measure the hydrolytic activity from a sample without dilution in a linear range from 0.05-1.60 U/mL, with the capability to reach sample dilutions up to 1000 times, a sampling frequency of five samples/h, with a kinetic reaction of 5 min and a relative standard deviation of 8.75%. The results are promising to monitor lipase/esterase activity in real time, in which optimization and control strategies can be designed.
脂肪酶和酯酶是在实验室和工业层面使用的生物催化剂。为了在生物过程中获得最大产量,测量关键变量(如酶活性)非常重要。监测水解活性的传统方法是从生物反应器中取出样品,在实验室进行离线分析。这种方法的缺点是从过程中获取信息所需的时间长,阻碍了开发控制系统的可能性。因此需要监测脂肪酶/酯酶活性的新策略。在此背景下,作为第一种方法,我们提出了一种实验室自制的顺序注射分析系统,用于分析摇瓶中的离线样品。使用对硝基苯丁酸作为底物测定脂肪酶/酯酶活性。顺序注射分析使我们能够在不稀释样品的情况下,在0.05 - 1.60 U/mL的线性范围内测量水解活性,能够达到高达1000倍的样品稀释度,采样频率为每小时5个样品,动力学反应时间为5分钟,相对标准偏差为8.75%。这些结果对于实时监测脂肪酶/酯酶活性很有前景,据此可以设计优化和控制策略。