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Strategies for improved bioproduction of benzaldehyde by Pichia pastoris and the use of hytrel as tubing material for integrated product removal by in situ pervaporation

机译:巴斯德毕赤酵母改善苯甲醛生物生产的策略以及使用Hytrel作为管材材料通过原位全蒸发去除集成产品的策略

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Benzaldehyde (BZA), with its almond-like aroma, is an important additive in the food, fragrance and nutraceutical industries, and biologically derived BZA by microbial catalysts provides many advantages over the traditional methods of plant material extraction. The methylotrophic yeast Pichia pastoris induces alcohol oxidase (AOX) in the presence of methanol, which is highly nonspecific to other primary alcohols, and can oxidize them to their aldehyde form without further degradation/such as benzyl alcohol (BA) to BZA. In this work BA and BZA inhibition on P. pastoris cell growth was determined with an IC_(50) at 0.98 g L~(-1) for BZA and 2.95 g L~(-1) for BA, which are low levels and are undesirable for high biotransformation rates. Product detoxification, and not low AOX and low cellular energy source, was found to most improve the biotransformation rates, which prompted the application of in situ product removal (ISPR) using the thermoplastic polymer Hytrel 3078, fabricated into pervaporation tubing by DuPont, Canada. Hytrel 3078, chosen for its high partition coefficient (PC) for BZA and its low PC for BA, was characterized by available tubing surface area and permeate gas flow rate in terms of its BZA/BA flux, showing that permeate gas flow rate has a greater positive influence on flux. Finally, the integrated in situ pervaporation biotransformation was effective at continuous product separation, using 87.4% less polymer in comparison to studies with the use of polymer beads, and improved overall volumetric productivity of 214% (245.9 mgL~(-1) h~(-1) vs. 115.0 mg L~(-1) h~(-1)) over previous studies producing BZA.
机译:苯甲醛(BZA)具有杏仁般的香气,是食品,香料和营养食品行业的重要添加剂,与传统的植物材料提取方法相比,通过微生物催化剂生物衍生的BZA具有许多优势。甲基营养酵母巴斯德毕赤酵母在甲醇的存在下诱导醇氧化酶(AOX),甲醇对其他伯醇高度非特异性,并可以将其氧化成醛形式而不进一步降解/例如苯甲醇(BA)变成BZA。在这项工作中,用IC_(50)测定BZA和BZA对巴斯德毕赤酵母细胞生长的抑制作用,BZA为0.98 g L〜(-1),BA为2.95 g L〜(-1)。对于高生物转化率是不希望的。发现产品排毒,而不是低的AOX和低的细胞能源,可以最大程度地提高生物转化率,这促使使用由加拿大杜邦公司制造成全蒸发管的热塑性聚合物Hytrel 3078进行原位产品去除(ISPR)。选择Hytrel 3078是因为其BZA的高分配系数(PC)和BA的低PC,其特征在于可用的管道表面积和渗透气体流速(以BZA / BA流量表示)表明渗透气体流速具有对通量有更大的积极影响。最后,集成的原位全蒸发生物转化法在连续分离产品方面是有效的,与使用聚合物珠粒的研究相比,聚合物使用量减少了87.4%,总体积生产率提高了214%(245.9 mgL〜(-1)h〜( -1)与先前研究产生BZA的115.0 mg L〜(-1)h〜(-1))相比。

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