详细信息

Development of a Core-Shell-Encapsulated Biosensor for On-Site Detection of Trace Chlorpyrifos  ( SCI-EXPANDED收录 EI收录)  

文献类型:期刊文献

英文题名:Development of a Core-Shell-Encapsulated Biosensor for On-Site Detection of Trace Chlorpyrifos

作者:Qin, Yu[1,2];Chen, Sheng-Yan[1,2];Zhou, Ying[3];Dang, Yan-Yan[1,2];Zhang, Yan[1,2];Ye, Bang-Ce[1,3]

机构:[1]Shihezi Univ, State Key Lab Bioreactor Engn, Shihezi 832003, Peoples R China;[2]Shihezi Univ, Sch Chem & Chem Engn, State Key Lab Incubat Base Green Proc Chem Engn, Shihezi 832003, Peoples R China;[3]East China Univ Sci & Technol, State Key Lab Bioreactor Engn, Lab Biosyst & Microanal, Shanghai 200237, Peoples R China

年份:2026

卷号:11

期号:6

起止页码:4870

外文期刊名:ACS SENSORS

收录:;EI(收录号:20262621002218);WOS:【SCI-EXPANDED(收录号:WOS:001777946000001)】;

基金:This work was supported by the High-level Talent Startup Project of Shihezi University (Grant No. RCZK202417, Yan Zhang).

语种:英文

外文关键词:chlorpyrifos; whole-cell biosensor; hydrogel microbeads; core-shell structure; signal amplification

摘要:Chlorpyrifos, a broad-spectrum organophosphorus pesticide, accumulates persistently in the environment and food chain, posing significant risks to ecosystems and human health. Whole-cell biosensors offer a promising alternative for on-site pesticide detection. However, their practical application is hindered by insufficient sensitivity for trace residues and biosafety concerns. Here, we developed a core-shell hydrogel-encapsulated whole-cell biosensor for the sensitive and safe detection of trace-level chlorpyrifos. A metabolic module was integrated into the basic ChpR-P chpA genetic circuit to enhance sensitivity through signal amplification. This was realized through an enzymatic transformation of weakly activating substrates into derivatives with strong activating potential. This approach amplified the output signal and lowered the detection limit by 32-fold to 0.75 nM, meeting the stringent regulatory thresholds for chlorpyrifos residues. Furthermore, a physical containment approach based on core-shell hydrogel microbeads effectively prevented bacterial escape while maintaining high cell viability and sensing performance. The encapsulated biosensor remained active over 30 days of storage and showed reliable performance in real vegetable, water, and soil samples with satisfactory recoveries. This work provides a robust, field-deployable, and environmentally safe platform for monitoring trace chlorpyrifos residues in complex environmental matrices.

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