Glucose sensing based on hydrogel grating incorporating phenylboronic acid groups

Author:

Wen Xin12,Liu Yang3,Liu Qingping1,Chen Zhen3,Hu Xuehao34ORCID,Xu Ciyan1,Chen Haoyu1,Xing Malcolm5,Qu Hang3,Zhang Mingzhi1

Affiliation:

1. Joint Shantou International Eye Center of Shantou University and the Chinese University of Hong Kong

2. Shantou University Medical College

3. Shantou University

4. University of Mons

5. University of Manitoba Winnipeg

Abstract

We proposed a hydrogel grating sensor functionalized with phenylboronic acid (PBA) group for glucose concentration detection. A PBA functionalized polyacrylamide hydrogel film was first prepared via ultraviolet polymerization. Then, the diffraction grating was written on the hydrogel film via the femto-second (fs) laser point-by-point direct inscription. Binding between the PBA groups in the hydrogel and glucose molecules would lead to the swelling of hydrogel and the thus grating structure, thus modifying the diffraction properties of the grating. We experimentally characterized the swelling and transmission of the grating with different glucose concentrations. Sensitivity of the sensor was defined as variations in relative diffraction efficiency in response to glucose concentration changes, and was experimentally found to 0.61%/mM. The proposed sensor showed fast response towards the presence of glucose, and its reusability and biocompatibility were also confirmed. The use of fs-laser inscription technique does not require a pre-fabricated template, and would allow to directly modify the fabrication parameters such as scanning speed, pulse energy and frequency. Therefore, one is able to conveniently optimize the grating structure and improve the inscription efficiency. The proposed hydrogel grating could be potentially fabricated into wearable sensors, namely, contact lenses, for continuous monitoring of tear glucose level with rapid response.

Funder

Recherche Scientifique (FNRS, Belgium) under the Postdoctoral Researcher grant (C.R.) of Xuehao Hu

Science and Technology Department of Guangdong Province

2020 Li Ka Shing Foundation Cross-Disciplinary Research Grant

Publisher

Optica Publishing Group

Subject

Atomic and Molecular Physics, and Optics

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