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用于合成稀有糖D-塔格糖的可调谐金属有机框架(MOF)的开发与表征

Development and Characterization of a Tunable Metal-Organic Framework (MOF) for the Synthesis of a Rare Sugar D-Tagatose.

作者信息

Rai Shushil Kumar, Bhatiya Simran, Dhiman Rishu, Mittal Divya, Yadav Sudesh Kumar

机构信息

Center of Innovative and Applied Bioprocessing (CIAB), Knowledge City, Sector-81, Mohali, Punjab, 140306, India.

Regional Centre for Biotechnology, Faridabad, Haryana, 121001, India.

出版信息

Appl Biochem Biotechnol. 2025 Jan;197(1):384-397. doi: 10.1007/s12010-024-05013-2. Epub 2024 Aug 13.

DOI:10.1007/s12010-024-05013-2
PMID:39136914
Abstract

D-tagatose is a valuable rare sugar with potential health benefits such as antiobesity, low-calorie, prebiotic, and anticancer. However, its production is mainly depending on chemical or enzymatic catalysis. Herein, a cobalt-based metal-organic framework (MOF) was developed at room temperature in an aqueous system using a self-assembly method. The L-arabinose isomerase (L-AI) was immobilized into this unique MOF by an in situ encapsulation process. The morphology and structural aspects of the MOF preparations were characterized by different analytical techniques such as scanning electron microscopy (SEM), energy dispersive X-ray spectroscopy (EDX), confocal laser scanning microscopy (CLSM), Fourier transform infrared spectroscopy (FT-IR), and X-Ray diffraction (XRD). Moreover, thermogravimetric analysis (TGA) suggested the high thermal stability of the L-AI@MOF. Significantly, the immobilized catalyst exhibited enhanced catalytic efficiency (k/K) of 3.22 mM s and improved turnover number (k) of 57.32 s. The L-AI@MOF efficiently catalyzes the synthesis of D-tagatose from D-galactose up to the equilibrium level (~ 50%) of isomerization in heterogeneous catalysis. Interestingly, L-AI@MOF was found stable and reusable for more than five cycles without the requirement of additional metal ions during catalysis. Thus, L-AI stabilized in the MOF system demonstrated a higher catalytic activity and potential guidance for the sustainable synthesis of rare sugar D-tagatose.

摘要

D-塔格糖是一种有价值的稀有糖,具有抗肥胖、低热量、益生元和抗癌等潜在健康益处。然而,其生产主要依赖化学或酶催化。在此,通过自组装方法在室温下的水体系中制备了一种钴基金属有机框架(MOF)。通过原位封装过程将L-阿拉伯糖异构酶(L-AI)固定在这种独特的MOF中。采用扫描电子显微镜(SEM)、能量色散X射线光谱(EDX)、共聚焦激光扫描显微镜(CLSM)、傅里叶变换红外光谱(FT-IR)和X射线衍射(XRD)等不同分析技术对MOF制剂的形态和结构进行了表征。此外,热重分析(TGA)表明L-AI@MOF具有高热稳定性。值得注意的是,固定化催化剂表现出增强的催化效率(k/K)为3.22 mM s,周转数(k)提高到57.32 s。在多相催化中,L-AI@MOF能有效地将D-半乳糖催化合成D-塔格糖,直至异构化达到平衡水平(约50%)。有趣的是,发现L-AI@MOF稳定且可重复使用超过五个循环,催化过程中无需额外的金属离子。因此,在MOF体系中稳定的L-AI表现出更高的催化活性,并为稀有糖D-塔格糖的可持续合成提供了潜在指导。

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本文引用的文献

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Int J Biol Macromol. 2024 Jan;254(Pt 2):127781. doi: 10.1016/j.ijbiomac.2023.127781. Epub 2023 Nov 2.
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Immobilization of D-allulose 3-epimerase into magnetic metal-organic framework nanoparticles for efficient biocatalysis.
将 D-阿洛酮糖 3-差向异构酶固定在磁性金属有机骨架纳米粒子中用于高效生物催化。
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Metal-based micro-composite of L-arabinose isomerase and L-ribose isomerase for the sustainable synthesis of L-ribose and D-talose.L-阿拉伯糖异构酶和 L-核糖异构酶金属基微复合材料的可持续合成 L-核糖和 D-塔洛糖。
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