自愈水凝胶
固定化酶
纳米技术
材料科学
生物传感器
酶
传质
多孔性
化学工程
化学
可再生能源
细胞外
酶分析
兴奋剂
组织工程
酶催化
再生(生物学)
作者
Yuxi Zhu,Shenghao Wang,Yueyuan Luo,Linbo Cao,Xiuxiu Guo,Yue Zhang,Mingmin Li,Tie Wang
标识
DOI:10.1002/advs.202507886
摘要
The construction of high-performance immobilized enzymes is vastly desired for green biotransformation. Although hydrogels offer significant potential for facilitating biomedical applications of enzymes due to their flexibility, macroscopic processability, and extracellular matrix-like properties. However, maintaining enzymatic activity and recyclability within bulk hydrogels remains a formidable challenge due to restricted passive mass transfer and enzyme leakage. Herein, inspired by the heart's blood-pumping mechanism, a smart metal-organic framework (MOFs)-doped hydrogel is developed for enzyme immobilization to effectively address these challenges. Importantly, thermally triggered contraction/expansion cycles of the hydrogel, coupled with a dynamic water stream, significantly enhance substrates intake and endogenous products expulsion, while enzymes are effectively retained due to the interception effect of MOFs. This activity can be tuned by adjusting hydrogel contractility, enabling active mass transfer and regeneration similar to living tissues. Benefit from these advantages, the biosystems perform well in biosensing applications. This study provides a novel solution for enzymatic immobilization in porous 3D matrices and opens opportunities for the construction of life-like bio-microdevices or artificial organelles.
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