Application of Aqueous Two-Phase Systems with Thermoseparating Polymers (EOPO) as a Method for Extractive Fermentation with Neochloris oleoabundans

Ana Patricia Garza-Chapa, Carlos Iván Ávila-Velasco, José González‐Valdez, Alma Gómez-Loredo
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Abstract

Extractive fermentation is an in situ method for the production and recovery of biomolecules of interest. Aqueous two-phase systems (ATPS) allow the product to be recovered in one phase of the system, reducing unit operations in the bioprocess. Thermosensitive polymers such as EOPOs are an interesting alternative to be applied in ATPS. In this work, different EOPOs were tested in an extractive fermentation strategy with the green microalgae Neochloris oleoabundans to provide a basis for future implementations of these systems in microalgae bioprocesses. Extractive fermentations were carried out with two EOPOs of different molecular weights (3900 and 12,000 g/mol) at concentrations of 10% and 15% (w/v). The microalga was incubated axenically under two different sets of conditions for 21 and 45 days, respectively. Cell counts were performed, and cell growth curves were obtained. Additionally, a semi-continuous and batch extractive fermentation assay was performed. The extractive fermentation with EOPO showed lower cell growth and a longer adaptation time of the microalgae in the fermentation, and EPS production yields of up to 8–23 g/L were obtained. Extractive fermentation is an interesting method to be implemented in microalgae cultures; however, further conditions need to be explored to achieve an appropriate bioprocess.
将带有热分离聚合物(EOPO)的水基两相系统作为油菜新绿球藻提取发酵方法的应用
萃取发酵是一种就地生产和回收相关生物大分子的方法。水基两相系统(ATPS)允许在系统的一个阶段中回收产品,从而减少了生物工艺中的单位操作。热敏性聚合物(如 EOPOs)是一种可应用于 ATPS 的有趣替代品。在这项工作中,对绿色微藻 Neochloris oleoabundans 的萃取发酵策略中的不同 EOPOs 进行了测试,为今后在微藻生物工艺中实施这些系统奠定基础。我们使用两种不同分子量(3900 和 12,000 g/mol)的 EOPO 进行了萃取发酵,浓度分别为 10%和 15%(w/v)。微藻分别在两套不同的条件下轴向培养 21 天和 45 天。进行了细胞计数,并获得了细胞生长曲线。此外,还进行了半连续和批量萃取发酵试验。使用 EOPO 进行萃取发酵时,细胞生长速度较慢,微藻在发酵过程中的适应时间较长,EPS 产量高达 8-23 克/升。萃取发酵是在微藻类培养中实施的一种有趣的方法;然而,要实现适当的生物过程,还需要进一步探索条件。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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