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May 16, 2026Electrophoresis0 citations

Paper‐Based Electrochemical Aptasensor Chip for Ultrasensitive Glyphosate Detection Enabled by MXene–Au and Au@NiCo LDH Nanozyme Amplification

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YYYaqi YangHSHongxiao SunKSKe Sun

Key Points

  • This research aims to develop a sensitive method for detecting glyphosate in environmental samples using a paper-based aptasensor.
  • Utilized electrochemical detection integrated with paper-based microfluidics.
  • Developed aptasensor using thiolated capture DNA on electrodes for glyphosate binding.
  • Employed Au@NiCo LDH with peroxidase-like activity for signal amplification.
  • Achieved a wide linear detection range of 0.1 pg/mL to 10 ng/mL for glyphosate.
  • Demonstrated a limit of detection (LOD) of 0.05 pg/mL.
  • Highlighted potential for rapid and efficient environmental monitoring through this on-site detection method.

Abstract

ABSTRACT As one of the world's most widely used herbicides, glyphosate (Gly) poses considerable ecological and human health risks due to its environmental persistence and capacity to bioaccumulate through food webs in both terrestrial and aquatic ecosystems. Thus, developing analytical methods for Gly is critical for environmental monitoring, food safety, and public health protection. In this study, we combine electrochemical detection with paper‐based microfluidics to develop a novel rotary paper‐based aptasensor for highly selective and sensitive Gly quantification in environmental samples. Thiolated capture DNA (cDNA) is immobilized on the electrode surface via stable Au–S bonds, forming a well‐defined recognition interface. An apt‐Au@NiCo LDH with intrinsic peroxidase‐like activity is then anchored via complementary base pairing. Gly binding to its specific aptamer triggers measurable electrochemical signal changes, enabling precise recognition and quantification. The sensor achieves a wide linear range of 0.1 pg/mL–10 ng/mL, and the limit of detection (LOD) is 0.05 pg/mL. This work provides a novel, efficient, economical, and practical solution for on‐site, rapid, and ultrasensitive Gly detection in environmental samples. The platform shows strong promise for real‐world applications.

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Cite This Study

Yang et al. (2026) studied this question.

synapsesocial.com/papers/6a080985a487c87a6a40b624https://doi.org/10.1002/elps.70106
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