A Pump-Free Paper/PDMS Hybrid Microfluidic Chip for Bacteria Enrichment and Fast Detection

23 Pages Posted: 28 Sep 2023

See all articles by Zhengshan Zhu

Zhengshan Zhu

Chongqing University

Zilan Lv

Chongqing University Cancer Hospital

Li Wang

Chongqing University

Haolan Tan

Chongqing University

Yi Xu

Chongqing University

Shunbo Li

Chongqing University

Li Chen

Chongqing University

Abstract

Developing portable and sensitive biosensors for bacteria detection is highly demanded due to their association with environmental and food safety. Paper-based microfluidic chip is the suitable candidate for constructing pump-free biosensor since paper is hydrophilic, low-cost and easy to use. However, the contradiction between sensitivity and small sample volume seriously affects the application of paper-based chip for bacteria detection. Here, a new microfluidic biosensor, combining large PDMS reservoir for sample storage, hydrophilic paper substrate for pump-free water transport, coated microspheres for bacteria capture and super absorbent resin for water absorption, is designed for the detection of bacteria in aqueous samples. Once the sample solution is introduced in the reservoir, water will automatically flow through the gaps between microspheres and the target bacteria will be captured by the aptamer coated on the surface. To facilitate PDMS reservoir bonding and ensure water transport, the upper side of paper substrate is coated with Polyethylenimine modified PDMS and the bottom side is kept unchanged. After all the solution is filtrated, fluorescent dye strained bacteria are enriched on the microspheres. The fluorescent intensity representing the number of bacteria captured is then measured using a portable instrument. Through the designed microfluidic biosensor, the bacteria detection can be achieved with 2 ml sample solution in less than 20 min and a linear range from 10 CFU/ml to 1000 CFU/ml is obtained. The paper-based 3D biosensor has the merits of low-cost, simple operation, pump-free and high sensitivity and it can be applied to the simultaneous detection of multiple bacteria via integrating different aptamers.

Keywords: bacteria biosensor, hybrid microfluidic chip, paper/PDMS, enrichment, fluorescent detection

Suggested Citation

Zhu, Zhengshan and Lv, Zilan and Wang, Li and Tan, Haolan and Xu, Yi and Li, Shunbo and Chen, Li, A Pump-Free Paper/PDMS Hybrid Microfluidic Chip for Bacteria Enrichment and Fast Detection. Available at SSRN: https://ssrn.com/abstract=4580980 or http://dx.doi.org/10.2139/ssrn.4580980

Zhengshan Zhu

Chongqing University ( email )

Shazheng Str 174, Shapingba District
Shazheng street, Shapingba district
Chongqing 400044, 400030
China

Zilan Lv

Chongqing University Cancer Hospital ( email )

Chongqing
China

Li Wang

Chongqing University ( email )

Shazheng Str 174, Shapingba District
Shazheng street, Shapingba district
Chongqing 400044, 400030
China

Haolan Tan

Chongqing University ( email )

Shazheng Str 174, Shapingba District
Shazheng street, Shapingba district
Chongqing 400044, 400030
China

Yi Xu

Chongqing University ( email )

Shazheng Str 174, Shapingba District
Shazheng street, Shapingba district
Chongqing 400044, 400030
China

Shunbo Li (Contact Author)

Chongqing University ( email )

Shazheng Str 174, Shapingba District
Shazheng street, Shapingba district
Chongqing 400044, 400030
China

Li Chen

Chongqing University ( email )

Shazheng Str 174, Shapingba District
Shazheng street, Shapingba district
Chongqing 400044, 400030
China

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