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PMID: 42021452 已发表 · ppublish 英语

Single-Step Aerosol-Assisted Plasma Deposition of Biocomposite Glucose Oxidase/Poly(ethylene oxide) Films for Biosensing Applications.

ACS applied materials & interfaces ·第 18 卷 ·第 17 期 ·2026-05-06

Dekoster T, Vos R, Van Roy W, Inoue A, Nisol B, Jans K, Delabie A

摘要

Aerosol-assisted plasma deposition (AAPD) is a promising technique for the immobilization of delicate biomolecules, such as enzymes, on a variety of substrates. Here, we demonstrate for the first time the single-step deposition of glucose oxidase (GOx) in a poly(ethylene oxide) (PEO) matrix by AAPD with an atmospheric pressure plasma jet. The resulting biocomposite GOx/PEO films retain enzymatic activity, show excellent sensitivity, and allow glucose sensing in cell culture medium with 10% fetal bovine serum (FBS). We show that water evaporation during aerosol transport governs film morphology: enzymes precipitate in droplets reaching the substrate with a small volume fraction of water (ϕH2O), leading to a solid-like behavior when impacting on the substrate and formation of (hemi)spherical particles in/on the GOx/PEO films. In contrast, droplets retaining a high ϕH2O can spread upon impaction, leading to the formation of disk-like features in the GOx/PEO films and increased sensitivity of the films for glucose. The optimized films show a sensitivity for glucose of 4 μA cm-2 mM-1 in cell culture medium with 10% FBS and a linear range between 0.5 and 8 mM, which is comparable with typical values reported in the literature for a first-generation glucose biosensor. Furthermore, the films preserve 87% of their sensitivity after 4 weeks of dry storage. These findings demonstrate the potential of AAPD as a scalable, environmentally friendly method for the immobilization of biomolecules in a biocompatible matrix with tunable morphology and properties. The insights presented here can serve as a basis for further film optimization and for extending the process to other biomolecules.

关键词
aerosol-assisted plasma deposition atmospheric pressure plasma biocomposite films glucose oxidase poly(ethylene oxide)
文献信息
期刊
ACS applied materials & interfaces
期刊简称
ACS Appl Mater Interfaces
ISSN
1944-8252
发表日期
2026-05-06
语言
英语
国家/地区
United States
NLM ID
101504991
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