Production Process Optimization of Recombinant Erwinia carotovora l-Asparaginase II in Escherichia coli Fed-Batch Cultures and Analysis of Antileukemic Potential

大肠杆菌补料分批培养重组胡萝卜软腐菌l-天冬酰胺酶II生产工艺优化及抗白血病潜力分析

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作者:Bruna Coelho de Andrade, Gaby Renard, Adriano Gennari, Leonardo Luís Artico, José Ricardo Teixeira Júnior, Daniel Kuhn, Priscila Pini Zenatti Salles, Claucia Fernada Volken de Souza, Gustavo Roth, Jocelei Maria Chies, José Andrés Yunes, Luiz Augusto Basso

Abstract

The aims of this work were to optimize the production of Erwinia carotovoral-asparaginase II enzyme in Escherichia coli by different fed-batch cultivation strategies using a benchtop bioreactor and to evaluate the therapeutic potential of the recombinant enzyme against different acute lymphoblastic leukemia cell lines. The highest enzyme activities (∼98,000 U/L) were obtained in cultures using the DO-stat feeding strategy with induction in 18 h of culture. Under these experimental conditions, the maximum values for recombinant l-asparaginase II (rASNase) yield per substrate, rASNase yield per biomass, and productivity were approximately 1204 U/gglucose, 3660 U/gcells, and 3260 U/(L·h), respectively. This condition was efficient for achieving high yields of the recombinant enzyme, which was purified and used in in vitro antileukemic potential tests. Of all the leukemic cell lines tested, RS4;11 showed the highest sensitivity to rASNase, with an IC50 value of approximately 0.0006 U/mL and more than 70% apoptotic cells. The study demonstrated that the cultivation strategies used were efficient for obtaining high yield and productivity of rASNase with therapeutic potential inasmuch as cytotoxic activity and induction of apoptosis were demonstrated for this protein.

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