Department of Bioengineering, iBB-Institute for Bioengineering and Biosciences, Instituto Superior Técnico, Universidade de Lisboa, Av. Rovisco Pais, 1049-001 Lisboa, Portugal.
Associate Laboratory i4HB-Institute for Health and Bioeconomy, Instituto Superior Técnico, Universidade de Lisboa, Av. Rovisco Pais, 1049-001 Lisboa, Portugal.
Mar Drugs. 2024 Mar 23;22(4):142. doi: 10.3390/md22040142.
The enormous potential attributed to prodigiosin regarding its applicability as a natural pigment and pharmaceutical agent justifies the development of sound bioprocesses for its production. Using a strain isolated from a shallow-water hydrothermal vent, optimization of the growth medium composition was carried out. After medium development, the bacterium temperature, light and oxygen needs were studied, as was growth inhibition by product concentration. The implemented changes led to a 13-fold increase in prodigiosin production in a shake flask, reaching 19.7 mg/L. The conditions allowing the highest bacterial cell growth and prodigiosin production were also tested with another marine strain: isolated from a tide rock pool was able to produce 15.8 mg/L of prodigiosin. The bioprocess with was scaled up from 0.1 L shake flasks to 2 L bioreactors using the maintenance of the oxygen mass transfer coefficient () as the scale-up criterion. The implemented parameters in the bioreactor led to an 8-fold increase in product per biomass yield and to a final concentration of 293.1 mg/L of prodigiosin in 24 h.
巨大的潜力归因于灵菌红素作为天然色素和药物制剂的适用性,这证明了开发合理的生物工艺生产它是合理的。使用从浅海水热喷口分离出的菌株,对生长培养基的组成进行了优化。在进行培养基开发后,研究了细菌的温度、光照和氧气需求,以及产物浓度对生长的抑制作用。实施的改变使摇瓶中的灵菌红素产量增加了 13 倍,达到 19.7mg/L。还使用另一种海洋菌株测试了允许最高细菌细胞生长和灵菌红素生产的条件:从潮汐岩池分离出的菌株能够生产 15.8mg/L 的灵菌红素。使用维持氧传质系数()作为放大标准,将装有 的生物工艺从 0.1L 摇瓶放大到 2L 生物反应器。在生物反应器中实施的参数使产物每生物质产率增加了 8 倍,并在 24 小时内使灵菌红素的最终浓度达到 293.1mg/L。