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首页> 外文期刊>Journal of Chemical Technology & Biotechnology >The use of colloidal gas aphrons as novel downstream processing for the recovery of astaxanthin from cells of Phaffia rhodozyma
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The use of colloidal gas aphrons as novel downstream processing for the recovery of astaxanthin from cells of Phaffia rhodozyma

机译:利用胶体气态小分子作为下游加工从红发夫夫酵母细胞中回收虾青素

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BACKGROUND: There is an increasing interest in obtaining natural products with bioactive properties, using fermentation technology. However, the downstream processing consisting of multiple steps can be complicated, leading to increase in the final cost of the product. Therefore there is a need for integrated, cost-effective and scalable separation processes. RESULTS: The present study investigates the use of colloidal gas aphrons (CGA), which are surfactant-stabilized microbubbles, as a novel method for downstream processing. More particularly, their application for the recovery of astaxanthin from the cells of Phaffia rhodozyma is explored. Research carried out with standard solutions of astaxanthin and CGA generated from the cationic surfactant hexadecyl. trimethyl ammonium bromide (CTAB) showed that up to 90% recovery can be achieved under optimum conditions, i.e., pH 11 with NaOH 0.2 mol L-1. In the case of the cells' suspension from the fermentation broth, three different approaches were investigated: (a) the conventional integrated approach where CGA were applied directly; (b) CGA were applied to the clarified suspension of cells; and finally (c) the in situ approach, where CGA are generated within the clarified suspension of cells. Interestingly, in the case of the whole suspension (approach a) highest recoveries (78%) were achieved under the same conditions found to be optimal for the standard solutions. In addition, up to 97% recovery of total carotenoids could be achieved from the clarified suspension after pretreatment with NaOH. This pretreatment led to maximum cell disruption as well as optimum conditioning for subsequent CGA separation. CONCLUSIONS: These results demonstrate the potential of CGA for the recovery of bioactive components from complex feedstock. (c) 2008 Society of Chemical Industry.
机译:背景:使用发酵技术获得具有生物活性的天然产品的兴趣日益浓厚。然而,由多个步骤组成的下游处理可能很复杂,导致产品的最终成本增加。因此,需要集成的,成本有效的和可扩展的分离方法。结果:本研究调查了胶体气态小分子(CGA)的使用,它是一种表面活性剂稳定的微泡,作为一种下游加工的新方法。更具体地,探索了它们在从红发夫夫酵母细胞中回收虾青素的应用。使用由阳离子表面活性剂十六烷基生成的虾青素和CGA的标准溶液进行了研究。三甲基溴化铵(CTAB)表明,在最佳条件下,即使用NaOH 0.2 mol L-1的pH值为11时,回收率可达到90%。对于从发酵液中悬浮细胞的情况,研究了三种不同的方法:(a)直接应用CGA的常规整合方法; (b)将CGA应用于澄清的细胞悬浮液;最后是(c)原位方法,其中CGA在澄清的细胞悬液中产生。有趣的是,在整个悬浮液(方法a)的情况下,在对标准溶液最佳的相同条件下可实现最高回收率(78%)。此外,用NaOH预处理后,从澄清的悬浮液中可回收高达97%的总类胡萝卜素。这种预处理导致最大的细胞破坏以及为后续CGA分离提供的最佳条件。结论:这些结果证明了CGA从复杂原料中回收生物活性成分的潜力。 (c)2008年化学工业协会。

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