Technische Universität Berlin, Chair of Bioprocess Engineering, Berlin, Germany.
ANiMOX GmbH, Berlin, Germany.
Microb Biotechnol. 2023 Feb;16(2):286-294. doi: 10.1111/1751-7915.14150. Epub 2022 Sep 27.
Fat-containing animal by-product streams are locally available in large quantities. Depending on their quality, they can be inexpensive substrates for biotechnological processes. To accelerate industrial polyhydroxyalkanoate (PHA) bioplastic production, the development of efficient bioprocesses that are based on animal by-product streams is a promising approach to reduce overall production costs. However, the solid nature of animal by-product streams requires a tailor-made process development. In this study, a fat/protein-emulsion (FPE), which is a by-product stream from industrial-scale pharmaceutical heparin production and of which several hundred tons are available annually, was evaluated for PHA production with Ralstonia eutropha. The FPE was used as the sole source of carbon and nitrogen in shake flask and bioreactor cultivations. A tailored pneumatic feeding system was built for laboratory bioreactors to facilitate fed-batch cultivations with the solid FPE. The process yielded up to 51 g L cell dry weight containing 71 wt% PHA with a space-time yield of 0.6 g L h without using any carbon or nitrogen sources other than FPE. The presented approach highlights the potential of animal by-product stream valorization into PHA and contributes to a transition towards a circular bioeconomy.
富含脂肪的动物副产品在当地大量存在。根据其质量,它们可以作为生物技术过程中廉价的基质。为了加速工业聚羟基烷酸酯(PHA)生物塑料的生产,开发基于动物副产品的高效生物工艺是降低整体生产成本的一种有前途的方法。然而,动物副产品的固体性质需要定制的工艺开发。在这项研究中,一种脂肪/蛋白质乳液(FPE)被评估用于 Ralstonia eutropha 的 PHA 生产,它是工业规模制药肝素生产的副产物,每年有几百吨的产量。FPE 被用作摇瓶和生物反应器培养物中碳和氮的唯一来源。为实验室生物反应器构建了定制的气动进料系统,以方便使用固体 FPE 进行分批补料培养。该工艺生产的细胞干重最高可达 51 g/L,其中包含 71 wt%的 PHA,时空产率为 0.6 g L h,除 FPE 外没有使用任何其他碳源或氮源。所提出的方法突出了动物副产品流增值为 PHA 的潜力,并为向循环生物经济转型做出了贡献。