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首页> 外文期刊>Biochemical Engineering Journal >Solid state fermentation of mixed substrate for L-asparaginase production using tray and in-house designed rotary bioreactor
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Solid state fermentation of mixed substrate for L-asparaginase production using tray and in-house designed rotary bioreactor

机译:使用托盘和内部设计旋转生物反应器的L-天冬酰胺酶生产混合底物的固态发酵

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L-asparaginase cover a broad spectrum of industrial application like food, biosensor and chemotherapeutic drug. In the present work, L-asparaginase production was carried out using tray bioreactor and in-house designed, fabricated rotary bioreactor using previously optimized tri-substrate mixture using Aspergillus tubingensis IBBL1. L-asparaginase production by tray bioreactor was performed in temperature controlled chamber. Enzyme production was also performed in newly designed and fabricated rotary bioreactor at room temperature and effect of variables such as substrate loading, mixing events and particle size were evaluated. Maximum L-asparaginase activity of 20.58 U/gds was observed using tray bioreactor with bed height of 1 cm and by applying intermittent mixing strategy at 120 h of fermentation. In case of in-house designed rotary bioreactor, L-asparaginase activity of 19.96 U/gds was obtained with 1.5 kg substrate loading, 3 min delay time of the drum and on rotation for 30 s. These findings demonstrate that in-house designed rotary bioreactor was easy to handle, and has shown comparable results with tray bioreactor. At optimized conditions growth kinetics were studied in tray and rotary bioreactor using various growth model equations. Correlation between growth dynamics and L-asparaglnase production was explained by means of Leudeking-Piret model. Results indicate that under the optimized conditions, L-asparaginase can be produced in bulk quantities. (C) 2018 Elsevier B.V. All rights reserved.
机译:L-天冬酰胺酶涵盖食物,生物传感器和化学治疗剂等广谱的工业应用。在本作工作中,使用托盘生物反应器和内部设计的制造的旋转生物反应器进行L-天冬酰胺酶生产,使用预先优化的三衬底混合物使用aspergillus tubingensis ibbl1。托盘生物反应器的L-天冬酰胺酶在温控室中进行。在室温下,还在新设计和制造的旋转生物反应器中进行酶产生,评价诸如基材负载,混合事件和粒度的变量的效果。使用托盘生物反应器的床高度为1cm的托盘生物反应器观察到20.58U / GDS的最大L-天冬酰胺酶活性,并通过在120小时的发酵时施加间歇混合策略。在内部设计的旋转生物反应器的情况下,用1.5kg底物负载,3分钟的延迟时间和旋转30秒,得到19.96u / gds的L-天冬酰胺酶活性。这些研究结果表明,内部设计的旋转生物反应器易于处理,并显示出与托盘生物反应器的相当结果。在优化的情况下,使用各种生长模型方程在托盘和旋转生物反应器中研究了生长动力学。通过Leudeking-PiRet模型解释了生长动态和L-芦笋生产之间的相关性。结果表明,在优化的条件下,可以以大量的量生产L-天冬酰胺酶。 (c)2018 Elsevier B.v.保留所有权利。

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