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Microbial polymer synthesis in simulated microgravity: An investigation of the diffusion of nutrients in a modified bioreactor.

机译:模拟微重力下的微生物聚合物合成:在改良的生物反应器中营养物扩散的研究。

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摘要

As shown previously, microgravity has an enhancing effect on bacterial growth with respect to experiments performed conventionally under the influence of gravity. The focus of this research project was to investigate the nutrient concentration within the cell clusters as well as outside these clusters in an effort to contribute to the understanding of bacterial growth in simulated microgravity using a modified bioreactor. Azotobacter vinelandii UWD and Alacaligenus latus were used in this study. A commercial NASA bioreactor, HARV vessel, was redesigned and modified to facilitate samples withdrawal from clusters for analysis to investigate nutrients diffusion gradients within the reactor. The nutrient assay results supported quantitatively the effects observed in fermentation experiments and showed that the bioreactor does minimize convection while creating diffusional limitations that further support simulated microgravity. The glucose concentration differences between the culture and surrounding liquid observed, suggests that the modified bioreactor suppresses the growth phase convection as well as establishing a diffusion field.
机译:如前所述,相对于传统上在重力影响下进行的实验,微重力对细菌生长具有增强作用。该研究项目的重点是研究细胞簇内以及这些簇外的营养物浓度,以期有助于人们了解使用改良的生物反应器在模拟微重力下细菌的生长。本研究使用了葡萄固氮菌UWD和Alacaligenus latus。重新设计并修改了商用NASA生物反应器HARV容器,以方便从簇中取出样品进行分析,以研究反应器内营养物的扩散梯度。营养物测定结果定量支持了发酵实验中观察到的效果,并表明生物反应器确实将对流减至最小,同时产生了扩散限制,进一步支持了模拟微重力。观察到的培养物和周围液体之间的葡萄糖浓度差异表明,改性的生物反应器抑制了生长期的对流并建立了扩散场。

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