Green and Sustainable Chemistry

Volume 4, Issue 1 (February 2014)

ISSN Print: 2160-6951   ISSN Online: 2160-696X

Google-based Impact Factor: 0.71  Citations  

A Green Approach towards the Synthesis of Enantio Pure Diols Using Horse Radish Peroxidase Enzyme Immobilized on Magnetic Nanoparticles

HTML  XML Download Download as PDF (Size: 784KB)  PP. 15-19  
DOI: 10.4236/gsc.2014.41003    4,335 Downloads   7,000 Views  Citations

ABSTRACT

Enantiopure epoxides and their corresponding chiral vicinal diols serve as valuable intermediates in the synthesis of biologically active pharma and agro-compounds and also value added fine chemicals. Biocatalysts are well known for their selective hydrolysis of racemic epoxides to give optically pure chiral diols. This study highlights an efficient process of synthesis of chiral vicinal diols in good yields and enantioselectiviy using horse radish peroxidase enzyme immobilized on the amine functionalized magnetic nano particles (Fe3O4 nanoparticles) as enzyme carriers. It also facilitates separation of MNP-immobilized enzymes by applying external magnetic field. The immobilization of magnetic nano particles was confirmed by transmission electron microscope (TEM) and scanning electron microscope (SEM). The MNP-immobilized peroxidase enzyme improved stability of the enzyme and has shown broader substrate specificity in enantioselective hydrolysis of racemic epoxides, under mild and environmentally friendly conditions. The methodology MNP-immobilized enzyme developed in the synthesis of chiral diols has a potential for use in large-scale applications.

Share and Cite:

S. Siva Deepthi, E. Prasad, B. Venkata Subba Reddy, B. Sreedhar and A. Bhaskar Rao, "A Green Approach towards the Synthesis of Enantio Pure Diols Using Horse Radish Peroxidase Enzyme Immobilized on Magnetic Nanoparticles," Green and Sustainable Chemistry, Vol. 4 No. 1, 2014, pp. 15-19. doi: 10.4236/gsc.2014.41003.

Cited by

[1] Taguchi design-assisted co-immobilization of lipase A and B from Candida antarctica onto chitosan: Characterization, kinetic resolution application, and docking …
… Research and Design, 2022
[2] Chiral Magnetic Nanocomposite Particles: Preparation and Chiral Applications
Handbook of Magnetic Hybrid Nanoalloys and their …, 2022
[3] Use of Magnetic Nanoparticles Fe3O4 in the Synthesis of Biocatalysts Based on Horseradish Root Peroxidase
Chemical Engineering …, 2022
[4] ОКИСЛЕНИЕ ОРГАНИЧЕСКИХ СОЕДИНЕНИЙ МАГНИТНЫМ БИОКАТАЛИЗАТОРОМ
2020
[5] Physical–chemical analysis and kinetics of the magnetic biocatalyst for 2, 3, 6,-trimethylphenol oxidation
2020
[6] Oxidoreductase immobilization on magnetic nanoparticles
2019
[7] Phenol removal by HRP/GOx/ZSM-5 from aqueous solution: Artificial neural network simulation and genetic algorithms optimization
Journal of the Taiwan Institute of Chemical Engineers, 2018
[8] Towards an affordable enzymatic production of biopolyols–Comparing the immobilization of lipases by two optimized techniques
International Journal of Biological Macromolecules, 2018
[9] IMMOBILIZATION OF HORSERADISH PEROXIDASE: EFFECT OF THE SUPPORT AND THE DESIGN
2018
[10] EFFECTIVE GLUCOSE OXIDATION WITH MAGNETICALLY RECOVERABLE BIOCATALYSTS
2018
[11] МАГНИТОРАЗДЕЛЯЕМЫЙ БИОКАТАЛИЗАТОР НА ОСНОВЕ ГЛЮКООКСИДАЗЫ ДЛЯ ЭФФЕКТИВНОГО ОКИСЛЕНИЯ D-ГЛЮКОЗЫ
2018
[12] High Yield Immobilization and Stabilization of Oxidoreductases Using Magnetic Nanosupports and Their Potential Applications: An Update
Current Catalysis, 2017
[13] USPIO assisting degradation of MXC by host/guest-type immobilized laccase in AOT reverse micelle system
Environmental Science and Pollution Research, 2016
[14] A Green approach towards the synthesis of chiral alcohols using functionalized alginate immobilized Saccharomyces cerevisiae cells
Journal of Molecular Catalysis B: Enzymatic, 2016
[15] ФИЗИКО-ХИМИЧЕСКИЕ ХАРАКТЕРИСТИКИ МАГНИТООТДЕЛЯЕМОГО КАТАЛИЗАТОРА НА ОСНОВЕ ПЕРОКСИДАЗЫ ДЛЯ ОКИСЛЕНИЯ 2, 3, 6- …
2015
[16] Synthesis of ethyl caprylate in organic media using Candida rugosa lipase immobilized on exfoliated graphene oxide: Process parameters and reusability studies
Biochemical Engineering Journal, 2015

Copyright © 2024 by authors and Scientific Research Publishing Inc.

Creative Commons License

This work and the related PDF file are licensed under a Creative Commons Attribution 4.0 International License.