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Polymer-based controlled-release fed-batch microtiter plate – diminishing the gap between early process development and production conditions

机译:基于聚合物的控释补料分批微量滴定板–缩小了早期工艺开发与生产条件之间的差距

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摘要

BackgroundFed-batch conditions are advantageous for industrial cultivations as they avoid unfavorable phenomena appearing in batch cultivations. Those are for example the formation of overflow metabolites, catabolite repression, oxygen limitation or inhibition due to elevated osmotic concentrations. For both, the early bioprocess development and the optimization of existing bioprocesses, small-scale reaction vessels are applied to ensure high throughput, low costs and prompt results. However, most conventional small-scale procedures work in batch operation mode, which stands in contrast to fed-batch conditions in large-scale bioprocesses. Extensive expenditure for installations and operation accompany almost all cultivation systems in the market allowing fed-batch conditions in small-scale. An alternative, more cost efficient enzymatic glucose release system is strongly influenced by environmental conditions. To overcome these issues, this study investigates a polymer-based fed-batch system for controlled substrate release in microtiter plates.
机译:背景技术分批补料条件对于工业栽培是有利的,因为它们避免了分批栽培中出现的不利现象。这些例如是溢流代谢产物的形成,分解代谢物的抑制,氧的限制或由于渗透浓度升高引起的抑制。对于早期生物工艺开发和现有生物工艺的优化,均采用小型反应容器,以确保高通量,低成本和快速的结果。但是,大多数常规的小规模程序都以批处理操作模式工作,这与大规模生物过程中的补料分批条件形成对比。市场上几乎所有的耕作系统都伴随着大量的安装和操作支出,可以在小规模的条件下进行分批补料。另一种更具成本效益的酶促葡萄糖释放系统受到环境条件的强烈影响。为克服这些问题,本研究研究了一种基于聚合物的补料分批进样系统,以控制微量滴定板中的底物释放。

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