Green nanobiocatalysts: enhancing enzyme immobilization for industrial and biomedical applications

Author:

Khafaga Doaa S. R.1ORCID,Muteeb Ghazala2ORCID,Elgarawany Abdullrahman3,Aatif Mohammad4,Farhan Mohd5,Allam Salma3,Almatar Batool Abdulhadi2,Radwan Mohamed G.6ORCID

Affiliation:

1. Department of Basic Medical Sciences, Faculty of Medicine, Galala University, Suez, Egypt

2. Department of Nursing, College of Applied Medical Sciences, King Faisal University, Al-Ahsa, Saudi Arabia

3. Faculty of Medicine, Galala University, Suez, Egypt

4. Department of Public Health, College of Applied Medical Sciences, King Faisal University, Al-Ahsa, Saudi Arabia

5. Department of Basic Sciences, King Faisal University, Al Ahsa, Saudi Arabia

6. Health Sector, Faculty of Science, Galala University, Suez, Egypt

Abstract

Nanobiocatalysts (NBCs), which merge enzymes with nanomaterials, provide a potent method for improving enzyme durability, efficiency, and recyclability. This review highlights the use of eco-friendly synthesis methods to create sustainable nanomaterials for enzyme transport. We investigate different methods of immobilization, such as adsorption, ionic and covalent bonding, entrapment, and cross-linking, examining their pros and cons. The decreased environmental impact of green-synthesized nanomaterials from plants, bacteria, and fungi is emphasized. The review exhibits the various uses of NBCs in food industry, biofuel production, and bioremediation, showing how they can enhance effectiveness and eco-friendliness. Furthermore, we explore the potential impact of NBCs in biomedicine. In general, green nanobiocatalysts are a notable progression in enzyme technology, leading to environmentally-friendly and effective biocatalytic methods that have important impacts on industrial and biomedical fields.

Funder

King Faisal University, Saudi Arabia

Publisher

PeerJ

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