Semantic Scholar Open Access 2018 225 sitasi

Multi-point enzyme immobilization, surface chemistry, and novel platforms: a paradigm shift in biocatalyst design

M. Bilal M. Asgher Hairong Cheng Yunjun Yan Hafiz M.N. Iqbal

Abstrak

Abstract Engineering enzymes with improved catalytic properties in non-natural environments have been concerned with their diverse industrial and biotechnological applications. Immobilization represents a promising but straightforward route, and immobilized biocatalysts often display higher activities and stabilities compared to free enzymes. Owing to their unique physicochemical characteristics, including the high-specific surface area, exceptional chemical, electrical, and mechanical properties, efficient enzyme loading, and multivalent functionalization, nano-based materials are postulated as suitable carriers for biomolecules or enzyme immobilization. Enzymes immobilized on nanomaterial-based supports are more robust, stable, and recoverable than their pristine counterparts, and are even used for continuous catalytic processes. Furthermore, the unique intrinsic properties of nanomaterials, particularly nanoparticles, also confer the immobilized enzymes to be used for their broader applications. Herein, an effort has been made to present novel potentialities of multi-point enzyme immobilization in the current biotechnological sector. Various nano-based platforms for enzyme/biomolecule immobilization are discussed in the second part of the review. In summary, recent developments in the use of nanomaterials as new carriers to construct robust nano-biocatalytic systems are reviewed, and future trends are pointed out in this article.

Topik & Kata Kunci

Penulis (5)

M

M. Bilal

M

M. Asgher

H

Hairong Cheng

Y

Yunjun Yan

H

Hafiz M.N. Iqbal

Format Sitasi

Bilal, M., Asgher, M., Cheng, H., Yan, Y., Iqbal, H.M. (2018). Multi-point enzyme immobilization, surface chemistry, and novel platforms: a paradigm shift in biocatalyst design. https://doi.org/10.1080/07388551.2018.1531822

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Informasi Jurnal
Tahun Terbit
2018
Bahasa
en
Total Sitasi
225×
Sumber Database
Semantic Scholar
DOI
10.1080/07388551.2018.1531822
Akses
Open Access ✓