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从南极假丝酵母缀合物中制备高扩散多孔交联脂肪酶 B:传质进展及其在 5-羟甲基糠醛的酯交换反应中的应用。

Preparation of highly diffusible porous cross-linked lipase B from Candida antarctica conjugates: Advances in mass transfer and application in transesterification of 5-Hydroxymethylfurfural.

机构信息

Integrated Bioprocessing Laboratory, Department of Biotechnology, SRM Institute of Science and Technology, Tamil Nadu 603 203, India; Laboratoire de génie de l'environnement, Faculté de génie, Université de Sherbrooke, 2500 boul. de l'Université, Sherbrooke, Québec J1K 2R1, Canada.

Laboratoire de génie de l'environnement, Faculté de génie, Université de Sherbrooke, 2500 boul. de l'Université, Sherbrooke, Québec J1K 2R1, Canada.

出版信息

Int J Biol Macromol. 2021 Feb 15;170:583-592. doi: 10.1016/j.ijbiomac.2020.12.178. Epub 2020 Dec 29.

Abstract

The present work pronounces the three phase partitioning (TPP)-facilitated preparation of porous cross-linked Candida antarctica lipase B (CaLB) aggregates (pCLEAs) for 5-Hydroxymethylfurfural (HMF) esters synthesis. CLEAs and pCLEAs of CaLB were prepared with eupergit as the support under the optimized conditions of pH 8.0, eupergit/protein ratio of 3.0:1.0, 50 mM cross-linker concentration and 3.3 mg/mL BSA concentration in 4 h. The optimum starch concentration for pCLEAs was 0.20%, m/v. The maximum biocatalytic load was 650 U/g (CLEAs) and 721 U/g (pCLEAs), and the immobilized biocatalysts were stable over a pH range of 6.0-9.0 and temperature range of (40-60)°C. The BET surface area of CLEAs and pCLEAs were 21.3 and 29.1 m/g, respectively, and the catalytic efficiency of pCLEAs was 2.2-fold higher than that of CLEAs. Subsequently, the pCLEAs of CaLB were utilized for the manufacturing of industrially significant HMF esters. Under the optimized transesterification conditions, HMF conversion with pCLEAs CaLB was 1.41- and 1.25-fold higher than with free and CLEAs CaLB, respectively. The pCLEAs were reused upto 8 consecutive transesterification cycles and the produced HMF esters reduced the surface tension of water from 72 mN/m to 32.6 mN/m, proving its potential application as surface-active compounds.

摘要

本工作报道了三相分配(TPP)促进多孔交联南极假丝酵母脂肪酶 B(CaLB)聚集体(pCLEAs)制备 5-羟甲基糠醛(HMF)酯的方法。在 pH 8.0、Eupergit/蛋白比为 3.0:1.0、50 mM 交联剂浓度和 3.3 mg/mL BSA 浓度下,4 h 内用 eupergit 作为载体制备 CLEAs 和 pCLEAs。pCLEAs 的最佳淀粉浓度为 0.20%(m/v)。最大生物催化负载量为 650 U/g(CLEAs)和 721 U/g(pCLEAs),固定化生物催化剂在 pH 6.0-9.0 和(40-60)°C 温度范围内稳定。CLEAs 和 pCLEAs 的 BET 比表面积分别为 21.3 和 29.1 m/g,pCLEAs 的催化效率比 CLEAs 高 2.2 倍。随后,利用 CaLB 的 pCLEAs 制备了具有工业重要意义的 HMF 酯。在优化的转酯化条件下,pCLEAs CaLB 的 HMF 转化率分别比游离 CaLB 和 CLEAs CaLB 高 1.41 倍和 1.25 倍。pCLEAs 可重复使用 8 次连续的转酯化循环,生成的 HMF 酯将水的表面张力从 72 mN/m 降低至 32.6 mN/m,证明其具有作为表面活性剂化合物的潜在应用。

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