Mang Rongchen, Zhou Yuyang, Du Xuefei, Zhou Hua, Zhu Mingxin
College of Biological and Pharmaceutical Engineering, Nanjing TECH University, Nanjing, China.
Biotechnol Appl Biochem. 2023 Oct;70(5):1772-1780. doi: 10.1002/bab.2474. Epub 2023 Jun 1.
Diisooctyl 2,5-furandicarboxylate (DEF), an ester derivative of 2,5-furandicarboxylic acid (FDCA, a bio-based platform chemical), resembles the physical and chemical properties of phthalates. Due to its excellent biodegradability, DEF is considered a safer alternative to the hazardous phthalate plasticizers. Although FDCA esters are currently mainly produced by chemical synthesis, the enzymatic synthesis of DEF is a green, promising alternative. The current study investigated the biosynthesis of DEF by Candida antarctica lipase B (CALB) immobilized on macroporous resins. Out of five macroporous resins (NKA-9, LX-1000EP, LX-1000HA, XAD-7HP, and XAD-8) evaluated, the LX-1000EP epoxy resin was identified as the best carrier for CALB, and the XAD-7HP weakly polar resin was identified as the second best. The optimal immobilization conditions were as follows: CALB (500 μL) and LX-1000EP (0.1 g) were incubated in phosphate butter (20 mM, pH 6.0) for 10 h at 35°C. The resulting immobilized CALB (EP-CALB) showed an activity of 639 U/g in the hydrolysis of p-nitrophenyl acetate, with an immobilization efficiency of 87.8% and an activity recovery rate of 56.4%. Using 0.02 g EP-CALB as the catalyst in 10 mL toluene, and the molar ratio of 2,5-dimethyl furanediformate (1 mmol/mL) and isooctyl alcohol (4 mmol/mL) that was 1:4, a DEF conversion rate of 91.3% was achieved after a 24-h incubation at 50°C. EP-CALB had similar thermal stability and organic solvent tolerance compared to Novozym 435, and both were superior to CALB immobilized on the XAD-7HP resin. EP-CALB also exhibited excellent operational stability, with a conversion rate of 52.6% after 10 repeated uses. EP-CALB could be a promising alternative to Novozym 435 in the biomanufacturing of green and safe plasticizers such as DEF.
2,5-呋喃二甲酸二异辛酯(DEF)是2,5-呋喃二甲酸(FDCA,一种生物基平台化学品)的酯衍生物,其物理和化学性质与邻苯二甲酸酯相似。由于其优异的生物降解性,DEF被认为是危险邻苯二甲酸酯类增塑剂的更安全替代品。尽管目前FDCA酯主要通过化学合成生产,但DEF的酶促合成是一种绿色且有前景的替代方法。当前研究调查了固定在大孔树脂上的南极假丝酵母脂肪酶B(CALB)对DEF的生物合成。在评估的五种大孔树脂(NKA-9、LX-1000EP、LX-1000HA、XAD-7HP和XAD-8)中,LX-1000EP环氧树脂被确定为CALB的最佳载体,XAD-7HP弱极性树脂被确定为第二佳载体。最佳固定化条件如下:将CALB(500μL)和LX-1000EP(0.1g)在磷酸盐缓冲液(20mM,pH 6.0)中于35°C孵育10小时。所得固定化CALB(EP-CALB)在乙酸对硝基苯酯水解中的活性为639U/g,固定化效率为87.8%,活性回收率为56.4%。以0.02g EP-CALB作为10mL甲苯中的催化剂,2,5-二甲基呋喃二甲酸酯(1mmol/mL)与异辛醇(4mmol/mL)的摩尔比为1:4,在50°C孵育24小时后,DEF转化率达到91.3%。与诺维信435相比,EP-CALB具有相似的热稳定性和有机溶剂耐受性,且两者均优于固定在XAD-7HP树脂上的CALB。EP-CALB还表现出优异的操作稳定性,重复使用10次后转化率为52.6%。在绿色安全增塑剂如DEF的生物制造中,EP-CALB可能是诺维信435的一种有前景的替代品。