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在响应面优化条件下,利用蔗糖基廉价底物通过(MTCC 1472)改进高纯度聚-3-羟基丁酸酯(PHB)的补料分批生产。

Improved fed-batch production of high-purity PHB (poly-3 hydroxy butyrate) by (MTCC 1472) from sucrose-based cheap substrates under response surface-optimized conditions.

作者信息

Dey Pinaki, Rangarajan Vivek

机构信息

Department of Biosciences and Technology, Karunya University, Coimbatore, 641114 India.

Chemical Engineering Department, BITS Pilani, Goa, 403726 India.

出版信息

3 Biotech. 2017 Oct;7(5):310. doi: 10.1007/s13205-017-0948-6. Epub 2017 Sep 13.

Abstract

Experimental investigations were carried out for (MTCC 1472)-based improved production of poly-3 hydroxy butyrate (PHB) through induced nitrogen limiting fed-batch cultivation strategies. Initially Plackett-Burman design and response surface methodology were implemented to optimize most influencing process parameters. With optimized process parameter values, continuous feeding strategies ware applied in a 5-l fermenter with table sugar concentration of 100 g/l, nitrogen concentration of 0.12 g/l for fed-batch fermentation with varying dilution rates of 0.02 and 0.046 1/h. To get enriched production of PHB, concentration of the sugar was further increased to 150 and 200 g/l in feeding. Maximum concentrations of PHB achieved were 22.35 and 23.07 g/l at those dilution rates when sugar concentration maintains at 200 g/l in feeding. At maximum concentration of PHB (23.07 g/l), productivity of 0.58 g/l h was achieved with maximum PHB accumulation efficiency up to 64% of the dry weight of biomass. High purity of PHB, close to medical grade was achieved after surfactant hypochlorite extraction method, and it was further confirmed by SEM, EDX, and XRD studies.

摘要

通过诱导氮限制补料分批培养策略,对基于(MTCC 1472)的聚3-羟基丁酸酯(PHB)改进生产进行了实验研究。最初采用Plackett-Burman设计和响应面方法来优化最具影响力的工艺参数。在优化的工艺参数值下,在5升发酵罐中应用连续补料策略,蔗糖浓度为100克/升,氮浓度为0.12克/升,用于补料分批发酵,稀释率分别为0.02和0.046 1/小时。为了提高PHB的产量,补料中蔗糖浓度进一步提高到150和200克/升。当补料中蔗糖浓度保持在200克/升时,在这些稀释率下,PHB的最大浓度分别达到22.35和23.07克/升。在PHB最大浓度(23.07克/升)时,实现了0.58克/升·小时的生产率,PHB最大积累效率高达生物质干重的64%。通过表面活性剂次氯酸盐萃取法获得了接近医药级的高纯度PHB,SEM、EDX和XRD研究进一步证实了这一点。

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