首页> 外文期刊>World Journal of Microbiology & Biotechnology >Scale-up from shake flasks to bioreactor, based on power input and Streptomyces lividans morphology, for the production of recombinant APA (45/47 kDa protein) from Mycobacterium tuberculosis
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Scale-up from shake flasks to bioreactor, based on power input and Streptomyces lividans morphology, for the production of recombinant APA (45/47 kDa protein) from Mycobacterium tuberculosis

机译:根据功率输入和链霉菌链霉菌的形态从摇瓶放大到生物反应器,用于从结核分枝杆菌生产重组APA(45/47 kDa蛋白)

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摘要

Culture conditions in shake flasks affect filamentous Streptomyces lividans morphology, as well the productivity and O-mannosylation of recombinant Ala-Pro-rich O-glycoprotein (known as the 45/47 kDa or APA antigen) from Mycobacterium tuberculosis. In order to scale up from previous reported shake flasks to bioreactor, data from the literature on the effect of agitation on morphology of Streptomyces strains were used to obtain gassed volumetric power input values that can be used to obtain a morphology of S. lividans in bioreactor similar to the morphology previously reported in coiled/baffled shake flasks by our group. Morphology of S. lividans was successfully scaled-up, obtaining similar mycelial sizes in both scales with diameters of 0.21 +/- A 0.09 mm in baffled and coiled shake flasks, and 0.15 +/- A 0.01 mm in the bioreactor. Moreover, the specific growth rate was successfully scaled up (0.09 +/- A 0.02 and 0.12 +/- A 0.01 h(-1), for bioreactors and flasks, respectively), and the recombinant protein productivity measured by densitometry, as well. More interestingly, the quality of the recombinant glycoprotein measured as the amount of mannoses attached to the C-terminal of APA was also scaled- up; with up to five mannose residues in cultures carried out in shake flasks; and six in the bioreactor. However, final biomass concentration was not similar, indicating that although the process can be scaled-up using the power input, others factors like oxygen transfer rate, tip speed or energy dissipation/circulation function can be an influence on bacterial metabolism.
机译:摇瓶中的培养条件影响丝状链霉菌的形态,以及结核分枝杆菌中富含重组丙氨酸-脯氨酸的O-糖蛋白(称为45/47 kDa或APA抗原)的生产力和O-甘露糖基化。为了从先前报道的摇瓶中扩大到生物反应器,文献中有关搅拌对链霉菌菌株形态的影响的数据用于获得充气的容积功率输入值,该输入值可用于获得生物反应器中S. lividans的形态。与我们小组先前在盘绕/带挡板摇瓶中报道的形态相似。 lividans的形态学已成功扩大规模,在带挡板的和摇动的摇瓶中,两个刻度的菌丝体大小均相似,直径为0.21 +/- A 0.09 mm,在生物反应器中,直径为0.15 +/- A 0.01 mm。此外,成功地提高了比生长速度(对于生物反应器和烧瓶,分别为0.09 +/- A 0.02和0.12 +/- A 0.01 h(-1)),重组蛋白的生产率也通过光密度法进行了测量。更有趣的是,重组糖蛋白的质量(按附着在APA C末端的甘露糖的数量来衡量)也得到了扩大。在摇瓶中进行培养时,最多含有五个甘露糖残基;在生物反应器中有六个。但是,最终生物质浓度并不相似,这表明尽管可以使用电源输入来扩大处理过程,但其他因素(如氧气传输速率,叶尖速度或能量耗散/循环功能)可能会影响细菌的代谢。

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