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In situ pH management for microbial culture in shake flasks and its application to increase plasmid yield

机译:摇瓶中微生物培养的原位pH管理及其在提高质粒产量中的应用

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Shake flasks are widely used to culture microorganisms, but they do not allow for pH control without additional infrastructure. In the presence of a carbon source like glucose, culture pH typically decreases due to overflow metabolism and can limit the growth of microorganisms in shake flasks. In this study, we demonstrate the use of magnesium hydroxide-loaded pH managing hydrogels (m-pHmH) for in situ base release to counter the decrease in culture pH in shake flasks using Escherichia coli as a model organism, in both complex and mineral salts medium. Base release from m-pHmH is shown to increase with decreasing pH (22-fold increase in release rate from pH 8 to 5), thus providing feedback from culture pH. The addition of m-pHmH resulted in better pH maintenance and higher biomass yields of E. coli K12 in media containing glucose as a carbon source. The use of m-pHmH with additional buffer resulted in pH being maintained above 6.9 while pH decreases below 5 without m-pHmH. We demonstrate one application of such in situ pH management to increase the volumetric plasmid yield from E. coli in shake flask culture. In situ glucose release through a hydrogel to mimic fed-batch culture along with the addition of m-pHmH resulted in a 395 % increase in volumetric plasmid yield to 38 mu g/ml in shake flask culture.
机译:摇瓶被广泛用于培养微生物,但如果没有其他基础设施,则无法控制pH。在存在葡萄糖等碳源的情况下,培养液的pH通常会由于新陈代谢的降低而降低,并可能限制摇瓶中微生物的生长。在这项研究中,我们证明了使用载有氢氧化镁的pH处理水凝胶(m-pHmH)进行原位释放,以抵消以大肠杆菌为模型生物的摇瓶中复杂盐酸盐和矿物盐中培养瓶pH的降低。中。从m-pHmH释放的碱显示出随着pH的降低而增加(从pH 8到5的释放速率增加22倍),从而提供了培养pH的反馈。在包含葡萄糖作为碳源的培养基中,m-pHmH的添加导致更好的pH维持率和更高的大肠杆菌K12生物量产量。在不使用m-pHmH的情况下,将m-pHmH与附加的缓冲液配合使用可使pH值保持在6.9以上,而pH值降至5以下。我们证明了这种原位pH管理的一种应用,可以增加摇瓶培养中大肠杆菌的质粒体积产量。通过水凝胶原位释放葡萄糖以模拟分批补料培养,同时添加m-pHmH,摇瓶培养中质粒质粒的产量增加了395%,达到38μg / ml。

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