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Updated: Aug 9, 2025

16:38
Bridging the Bio-Electronic Interface with Biofabrication
Published on: June 6, 2012
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Recent advances in MOF-bio-interface: a review
Yingfeng Li1, Ru Wang1, Xue Liu1
1School of Food Science and Pharmaceutical Engineering, Nanjing Normal University, Nanjing, People's Republic of China.
Nanotechnology
|February 16, 2023
Summary
Metal-organic frameworks (MOFs) engineering biomacromolecules and living systems enhances stability and efficiency. This review explores MOF-bio-interfaces for life and material science advancements.
Area of Science:
- Materials Science
- Biotechnology
- Interface Engineering
Background:
- Metal-organic frameworks (MOFs) offer tunable properties for diverse applications.
- Biomacromolecules and living systems are crucial but face stability and efficiency challenges.
- Existing MOF applications are limited in harsh environments.
Approach:
- This review systematically examines MOF-bio-interface engineering strategies.
- It summarizes MOF interactions with proteins, polysaccharides, DNA, cells, microbes, and viruses.
- The review analyzes current limitations and future research trajectories.
Key Points:
- MOF-bio-interface engineering overcomes biomacromolecule and living system limitations.
- Specific interfaces discussed include MOFs with enzymes, non-enzymatic proteins, DNA, and cellular entities.
- This approach enhances stability, recyclability, and efficiency in challenging conditions.
Conclusions:
- MOF-bio-interface engineering presents a promising strategy for advancing life and material sciences.
- Future research should focus on overcoming current limitations and exploring novel applications.
- This field holds potential for significant innovation in biomaterials and bio-interfaces.
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