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应用碳酸氢铵缓冲液作为固定化头孢菌素 C 酰化酶催化不同反应器中智能微环境 pH 调节剂。

Application of ammonium bicarbonate buffer as a smart microenvironmental pH regulator of immobilized cephalosporin C acylase catalysis in different reactors.

机构信息

Department of Environmental Engineering, University of Science and Technology Beijing, Beijing, China.

Beijing Key Laboratory of Resource-oriented Treatment of Industrial Pollutants, Beijing, China.

出版信息

Biotechnol Prog. 2019 Sep;35(5):e2846. doi: 10.1002/btpr.2846. Epub 2019 May 24.

Abstract

In a stirred tank reactor, during catalysis with immobilized cephalosporin C acylase (CCA), the microenvironmental pH dropped to 7.2 in a nonbuffered system (with the pH maintained at 8.5 by adding alkali) due to the existence of diffusional resistance. Moreover, the immobilized CCA only catalyzed five batch reactions, suggesting that the sharp pH gradient impaired the enzyme stability. To buffer the protons produced in the hydrolysis of cephalosporin C by CCA, phosphate and bicarbonate buffers were introduced. When CCA was catalyzed with 0.1 M ammonium bicarbonate buffer, no obvious gradient between the bulk solution and intraparticle pH was detected, and the catalysis of 15 batch reactions was achieved. Accordingly, with 0.2 M ammonium bicarbonate buffer in a packed bed reactor, the immobilized CCA exhibited continuous catalysis with high conversion rates (≥95%) for 21 days. Reactions with ammonium bicarbonate buffer showed significant increases in the stability and catalytic efficiency of the immobilized CCA in different reactors compared to those in nonbuffered systems.

摘要

在搅拌釜式反应器中,固定化头孢菌素 C 酰化酶(CCA)催化时,由于存在扩散阻力,非缓冲体系(通过加碱将 pH 维持在 8.5)中的微环境 pH 会降至 7.2。此外,固定化 CCA 仅催化了五个批次反应,表明剧烈的 pH 梯度会损害酶的稳定性。为了缓冲 CCA 水解头孢菌素 C 产生的质子,引入了磷酸盐和碳酸氢盐缓冲液。当 CCA 用 0.1 M 碳酸氢铵缓冲液催化时,在主体溶液和颗粒内 pH 之间未检测到明显的梯度,并且实现了 15 批反应的催化。因此,在填充床反应器中使用 0.2 M 碳酸氢铵缓冲液,固定化 CCA 表现出连续催化,转化率(≥95%)高,持续 21 天。与非缓冲体系相比,在不同反应器中,碳酸氢铵缓冲液反应显著提高了固定化 CCA 的稳定性和催化效率。

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