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Characterization of the Metabolic Response of Streptomyces clavuligerus to Shear Stress in Stirred Tanks and Single-Use 2D Rocking Motion Bioreactors for Clavulanic Acid Production

机译:表征链霉菌Clavuligerus在搅拌槽中剪切应力的表征及单用2D摇动运动生物反应器,用于克拉维酸生产

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Streptomyces clavuligerus is a gram-positive filamentous bacterium notable for producing clavulanic acid (CA), an inhibitor of β-lactamase enzymes, which confers resistance to bacteria against several antibiotics. Here we present a comparative analysis of the morphological and metabolic response of S. clavuligerus linked to the CA production under low and high shear stress conditions in a 2D rocking-motion single-use bioreactor (CELL-tainer ? ) and stirred tank bioreactor (STR), respectively. The CELL-tainer ? guarantees high turbulence and enhanced volumetric mass transfer at low shear stress, which (in contrast to bubble columns) allows the investigation of the impact of shear stress without oxygen limitation. The results indicate that high shear forces do not compromise the viability of S. clavuligerus cells; even higher specific growth rate, biomass, and specific CA production rate were observed in the STR. Under low shear forces in the CELL-tainer ? the mycelial diameter increased considerably (average diameter 2.27 in CELL-tainer ? vs. 1.44 μm in STR). This suggests that CA production may be affected by a lower surface-to-volume ratio which would lead to lower diffusion and transport of nutrients, oxygen, and product. The present study shows that there is a strong correlation between macromorphology and CA production, which should be an important aspect to consider in industrial production of CA.
机译:Streptomyces clavuligerus是一种革兰氏阳性丝状细菌,所述丝状细菌可用于生产克拉维酸(CA),β-内酰胺酶的抑制剂,其赋予耐细菌的抗性抗生素。在这里,我们提出了与在2D摇动运动单使用生物反应器(细胞 - 粘合剂?)中的低和高剪切应力条件下与CA生产联系的S.Clavuligerus的形态和代谢反应的比较分析。搅拌罐生物反应器(STR ), 分别。细胞 - 硬盘?保证低剪切应力下的高湍流和增强的体积传递,(与泡柱相比)允许调查剪切应力的影响而没有氧气限制。结果表明,高剪切力不会损害S. clavuligerus细胞的活力;在STR中观察到甚至更高的特异性生长速率,生物质和特定的CA生产率。在细胞 - 持续的低剪切力下?菌丝菌素直径显着增加(细胞 - Tainer中的平均直径2.27?在str中的1.44μm。这表明CA生产可能受到较低的表面积比的影响,这将导致营养,氧气和产品的扩散和运输较低。本研究表明,大环学和CA生产之间存在强烈的相关性,这应该是在加利福尼亚州工业生产中考虑的一个重要方面。

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