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March 23, 2026Journal of Agricultural and Food Chemistry6 citations

Co-Immobilized Multi-Enzyme Systems with Spatial Arrangement for Glucose Detection

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HLHui LiMSMeijia SongSYShao Yang

Key Points

  • To enhance glucose detection sensitivity through controlled multi-enzyme co-immobilization.
  • Constructed compartmentalized system with HRP and GOx localized in polydopamine layers.
  • Utilized hierarchical porous carbon spheres for enzyme immobilization.
  • Evaluated enzyme activity, stability, and glucose detection limits.
  • Achieved immobilization yields of 54.6% for GOx and 65.0% for HRP.
  • Demonstrated 1.65-fold increase in activity compared to free enzymes.
  • Maintained 75.66% initial activity after 7 reuses under extreme conditions.
  • Achieved glucose detection limit of 0.28 μM with a reaction time of 3 minutes.

Abstract

Multi-enzyme immobilization offers promise for sensitive glucose detection, but traditional random co-immobilization hampers spatial control. Here, a compartmentalized system (HRP.PDA.GOx@NPC-10) was constructed by localizing GOx and HRP in the inner and outer polydopamine layers on hierarchical porous carbon spheres. This method can precisely control the spatial arrangement of enzyme molecules, effectively reduce the inhibitory effects of H2O2, and enhance the catalytic efficiency of multi-enzyme catalysis. The immobilization yields of GOx and HRP reached 54.6% and 65.0%, respectively. The resultant HRP.PDA.GOx@NPC-10 exhibited 1.65-folds higher activity than free enzymes and maintained favorable stability under extreme pH and temperature conditions. After 7 cycles, HRP.PDA.GOx@NPC-10 retained 75.66% of its initial activity, demonstrating reusability. Especially, HRP.PDA.GOx@NPC-10 has been demonstrated to possess a glucose detection limit as low as 0.28 μM and a reaction time of only 3 min, indicating its potential for practical glucose detection.

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Cite This Study

Li et al. (2026) studied this question.

synapsesocial.com/papers/69c0df0bfddb9876e79c15e2https://doi.org/10.1021/acs.jafc.5c09449
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