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High lovastatin production by Aspergillus terreus in solid-state fermentation on polyurethane foam: An artificial inert support

机译:曲霉曲霉在聚氨酯泡沫上进行固态发酵的高产洛伐他汀:一种人工惰性载体

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摘要

A novel solid-state fermentation (SSF) process, using high-density polyurethane foam (PUF) as an inert support, was developed for the production of lovastatin. Results indicated that forced aeration is not conducive to metabolite production since it reduces the solid medium's moisture content The highest level of production was achieved in closed flasks (CF), in which 7.5 mg of lovastatin was generated per gram of dry culture, equivalent to 493 μg/mg dry mycelium. However, since mycelial growth is aeration-dependent, the CF cultures presented the lowest level of growth: 15.19 mg/gdc (milligrams per gram of dry culture). It was possible to increase the biomass concentration to 24.4 mg/gdc by increasing the culture medium concentration to 2.5x and the initial moisture content of the solid medium to 85%. Results also revealed that the density of the culture support is a key parameter in determining lovastatin production; high yields were only obtained on PUF at a density of 17 or 20 kg/m3. SSF using the latter reached a lovastatin level of 19.95 mg/gdc, with specific production of 815 μg/mg dry mycelium. A comparative study showed that lovastatin production during PUF SSF was two-fold higher than that of the better-known system of bagasse SSF. Moreover, lovastatin yields on PUF were 30 times higher than those of liquid submerged fermentation (SmF; 0.57 mg/ml) and lovastatin biomass was almost 15 times more productive.
机译:以洛伐他汀的生产为基础,开发了一种以高密度聚氨酯泡沫(PUF)为惰性载体的新型固态发酵(SSF)工艺。结果表明,强制通气不利于代谢产物的产生,因为它会降低固体培养基的水分含量。最高产量是在密闭烧瓶(CF)中实现的,其中每克干培养物产生7.5 mg洛伐他汀,相当于493微克/毫克干菌丝体。但是,由于菌丝体的生长依赖于通气,因此CF培养物的生长水平最低:15.19 mg / gdc(每克干培养物毫克)。通过将培养基浓度增加到2.5倍,将固体培养基的初始水分含量增加到85%,可以将生物质浓度增加到24.4 mg / gdc。结果还表明,培养载体的密度是决定洛伐他汀产量的关键参数。只有在PUF上以17或20 kg / m3的密度才能获得高产量。使用后者的SSF的洛伐他汀水平达到19.95 mg / gdc,比产量为815μg/ mg干菌丝体。一项比较研究表明,PUF SSF期间洛伐他汀的产量比蔗渣SSF系统高出两倍。此外,PUF的洛伐他汀产量比液体深层发酵(SmF; 0.57 mg / ml)高30倍,而洛伐他汀的生物量几乎高15倍。

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