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磨损与超声联合作用对恶臭假单胞菌的破坏以有效释放精氨酸脱亚氨酶的影响

Combined effect of attrition and ultrasound on the disruption of Pseudomonas putida for the efficient release of arginine deiminase.

作者信息

Patil Mahesh D, Shinde Ashok S, Dev Manoj J, Patel Gopal, Bhilare Kiran D, Banerjee Uttam Chand

机构信息

Department of Pharmaceutical Technology (Biotechnology), National Institute of Pharmaceutical Education and Research, Punjab 160062, India.

出版信息

Biotechnol Prog. 2018 Sep;34(5):1185-1194. doi: 10.1002/btpr.2664. Epub 2018 Aug 6.

Abstract

Disruption of Pseudomonas putida KT2440 by ultrasound treatment in a bath sonicator, in presence of the glass beads, was carried out for the release of arginine deiminase (ADI) and the results were compared with that of by Dyno-mill. The release of ADI depended mainly on the bead size and cellmass concentration being disrupted in bead mill. Nearly 23 U mL ADI was released when slurry with a cell-mass concentration of 250 g L was disintegrated for 9 min with 80% bead loading (0.25 mm) in Dyno-mill. Marginally higher amount of ADI (24.1 U mL ) was released by the bath sonication of 250 g L cellmass slurry for 30 min with the beads (0.1 mm) and a sonication power of 170 W. The glass beads, suspended along with the cellmass slurry in bath sonicator, efficiently disrupted the microbial cells to release ADI. Variation in the kinetic constants for the performance parameters implied that ADI release and cell disruption kinetics is a function of disruption technique used and the process variables thereof. Estimation of location factor suggested that selective release of ADI can be achieved. © 2018 American Institute of Chemical Engineers Biotechnol. Prog., 2018 © 2018 American Institute of Chemical Engineers Biotechnol. Prog., 34:1185-1194, 2018.

摘要

在玻璃珠存在的情况下,通过浴式超声处理器对恶臭假单胞菌KT2440进行超声处理,以释放精氨酸脱亚氨酶(ADI),并将结果与 Dyno-mill的处理结果进行比较。ADI的释放主要取决于在珠磨机中被破碎的珠粒大小和细胞质量浓度。当细胞质量浓度为250 g/L的浆液在Dyno-mill中以80%的珠粒装载量(0.25 mm)破碎9分钟时,释放出近23 U/mL的ADI。通过对250 g/L细胞质量浆液与珠粒(0.1 mm)在浴式超声处理器中超声处理30分钟且超声功率为170 W,释放出的ADI量略高(24.1 U/mL)。与细胞质量浆液一起悬浮在浴式超声处理器中的玻璃珠有效地破碎了微生物细胞以释放ADI。性能参数动力学常数的变化表明,ADI释放和细胞破碎动力学是所用破碎技术及其过程变量的函数。位置因子的估计表明可以实现ADI的选择性释放。© 2018美国化学工程师学会生物技术进展,2018 © 2018美国化学工程师学会生物技术进展,34:1185 - 1194,2018。

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