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首页> 外文期刊>RSC Advances >Solid state fermentation of soybean waste and an up-flow column bioreactor for continuous production of camptothecine by an endophytic fungus Fusarium oxysporum
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Solid state fermentation of soybean waste and an up-flow column bioreactor for continuous production of camptothecine by an endophytic fungus Fusarium oxysporum

机译:大豆废物的固态发酵和倒流柱生物反应器,用于通过内生真菌镰刀菌连续生产喜树碱

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摘要

The potential of an endophytic fungus Fusarium oxysporum (NCIM 1383) to produce the anti-cancer prodrug 'camptothecine (CPT)' by solid state fermentation (SSF) of agro-industrial by-products was investigated. Amongst the various substrates used under optimized SSF conditions, soybean meal was found to be the most efficient medium for optimum production of CPT by the fungus. The effect of the addition of different complex protein sources to the soybean meal substrate on productivity by the fungus was also studied. The CPT production was found to be increased by 46.87% after supplementation of "whey concentrate powder" as a complex protein source to the soybean meal. The optimized SSF conditions were used to develop a bench-scale, up flow bioreactor to check its applicability for continuous CPT production which could yield up to 128 mg l(-1) CPT after 48 h of incubation. Whey, when used as a source of moisture in SSF, also was found to play a vital role in enhancing the CPT yield. Environmental parameters such as chemical oxygen demand (COD), biological oxygen demand (BOD), total dissolved solids (TDS), total soluble solids (TSS) and total protein content of whey effluent after fermentation were found to be reduced significantly highlighting the environmental applications of the process developed. The SSF methodology applied in the present study allows bioutilization of cheaper substrates; soybean meal and whey, by the endophytic fungus for production of valuable anti-cancer pro drug CPT.
机译:研究了内生真菌(NCIM 1383)以通过固态发酵(SSF)的农业产业副产物产生抗癌前药的抗癌前药(CPT)'的潜力。在优化的SSF条件下使用的各种底物中,发现大豆膳食是最有效的培养基,用于通过真菌的最佳生产CPT。还研究了对真菌的生产率的不同复合蛋白质来源的效果。在补充“乳清浓缩粉”作为大豆膳食的复杂蛋白质来源后,CPT产生的结果被发现增加了46.87%。优化的SSF条件用于开发台阶,上流生物反应器,以检查其对连续CPT产生的适用性,该生产可在48小时孵育后产生高达128 mg L(-1)CPT。乳清,当用作SSF中的水分源时,也发现在提高CPT产量方面发挥着至关重要的作用。发现诸如化学需氧量(COD),生物需氧量(BOD),总溶解固体(TDS),总可溶性固体(TSS)和发酵后的总溶解固体(TSS)和总蛋白质含量的环境参数被发现显着突出了环境应用,减少了乳清流出物开发的过程。应用在本研究中的SSF方法允许精体融合更便宜的基材;大豆膳食和乳清,由内生真菌生产有价值的抗癌专业药物CPT。

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