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从生物源杜鹃花醇糖苷生物催化生产杜鹃花醇的优化。

Optimization of Biocatalytic Rhododendrol Production from Biogenic Rhododendrol Glycosides.

作者信息

Leaković Emerik, Siems Karsten, Feussi Tala Michel, Habazin Antonia, Findrik Blažević Zvjezdana, Vrsalović Presečki Ana

机构信息

University of Zagreb Faculty of Chemical Engineering and Technology, Trg Marka Marulića 19, HR-10000 Zagreb, Croatia.

AnalytiCon Discovery GmbH, Hermannswerder 17, 14473 Potsdam, Germany.

出版信息

ACS Sustain Chem Eng. 2024 Oct 18;12(44):16329-16339. doi: 10.1021/acssuschemeng.4c05889. eCollection 2024 Nov 4.

Abstract

An enzyme-catalyzed synthesis of rhododendrol, an intermediate in the production of raspberry ketone, was investigated. The approach involves the enzymatic hydrolysis of rhododendrol glycosides into rhododendrol and a glycosidic residue. Rhododendrol glycosides, which are naturally derived from the inner bark of birch trees-a renewable resource-vary considerably in composition depending on the origin of the plants. In this study, mixtures of betuloside and apiosylrhododendrin from natural resources were used in different proportions. An in-depth study was conducted to assess the feasibility of the process. A mathematical model was developed based on studies of the kinetics and operational stability of the enzyme. The model for betuloside hydrolysis catalyzed by β-glucosidase was validated in batch, repetitive batch, and ultrafiltration membrane reactors. The highest productivity, ranging from 83.9 to 94.5 g L day, was achieved in the latter. After screening nearly 50 enzymes, RAPIDASE emerged as a solution for the hydrolysis of apiosylrhododendrin, and the model was validated in a batch reactor. Model-based optimization enabled the prediction of input parameters for different compositions of biogenic rhododendrol glycosides to obtain consistent process output metrics.

摘要

研究了一种酶催化合成覆盆子酮生产中间体杜鹃醇的方法。该方法涉及将杜鹃醇糖苷酶水解为杜鹃醇和糖苷残基。杜鹃醇糖苷天然来源于桦树内皮(一种可再生资源),其组成因植物来源不同而有很大差异。在本研究中,使用了来自自然资源的桦木苷和芹菜糖基杜鹃醇的不同比例混合物。进行了深入研究以评估该工艺的可行性。基于对酶的动力学和操作稳定性的研究建立了数学模型。β-葡萄糖苷酶催化桦木苷水解的模型在间歇式、重复间歇式和超滤膜反应器中得到验证。在后者中实现了最高生产率,范围为83.9至94.5 g L天。在筛选了近50种酶后,RAPIDASE成为芹菜糖基杜鹃醇水解的解决方案,并且该模型在间歇式反应器中得到验证。基于模型的优化能够预测不同组成的生物源杜鹃醇糖苷的输入参数以获得一致 的工艺输出指标。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1429/11539071/0a495dd59541/sc4c05889_0001.jpg

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