Toward High-Performance in Heavy Metal Detection: Mechanisms and Applications of Amplified Aptasensors

Heavy metals (Pb, Cd, Hg, As) pose severe, persistent threats to ecological integrity and human health. Conventional detection methods are limited by insufficient sensitivity, cumbersome pretreatment, high operational requirements and costs, restricting rapid on-site detection in resource-limited settings. Aptasensors, with high specificity, excellent stability and low cost, have emerged as a promising alternative. To overcome the sensitivity bottleneck for trace/ultra-trace heavy metal detection, this review systematically dissects three mainstream signal amplification strategies for aptasensor-based heavy metal analysis: nanomaterial-enabled, DNAzyme-mediated, and nucleic acid logic circuit-based amplification. Notably, this review covers the application of AI-aptasensor integration for future heavy metal detection. We also summarize current research progress, prevailing challenges, and future optimization directions, aiming to advance practical high-performance aptasensors for real-world heavy metal monitoring.

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Publication Details

Journal
Critical Reviews in Analytical Chemistry
Published
2026-09-11
DOI
https://doi.org/10.1080/10408347.2026.2731400
Primary Topic
Advanced biosensing and bioanalysis techniques
Type
article
Field-Weighted Citation Impact
0.00

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article

Toward High-Performance in Heavy Metal Detection: Mechanisms and Applications of Amplified Aptasensors

Fengyun Li, Keshu Sun, Yueyao Tong, Jingbo Liu
Critical Reviews in Analytical Chemistry
Advanced biosensing and bioanalysis techniques
article

Toward High-Performance in Heavy Metal Detection: Mechanisms and Applications of Amplified Aptasensors

Fengyun Li, Keshu Sun, Yueyao Tong, Jingbo Liu
article en

Abstract

Heavy metals (Pb, Cd, Hg, As) pose severe, persistent threats to ecological integrity and human health. Conventional detection methods are limited by insufficient sensitivity, cumbersome pretreatment, high operational requirements and costs, restricting rapid on-site detection in resource-limited settings. Aptasensors, with high specificity, excellent stability and low cost, have emerged as a promising alternative. To overcome the sensitivity bottleneck for trace/ultra-trace heavy metal detection, this review systematically dissects three mainstream signal amplification strategies for aptasensor-based heavy metal analysis: nanomaterial-enabled, DNAzyme-mediated, and nucleic acid logic circuit-based amplification. Notably, this review covers the application of AI-aptasensor integration for future heavy metal detection. We also summarize current research progress, prevailing challenges, and future optimization directions, aiming to advance practical high-performance aptasensors for real-world heavy metal monitoring.

Critical Reviews in Analytical Chemistry
Tianjin Agricultural University (CN), Tianjin University of Traditional Chinese Medicine (CN)
National Natural Science Foundation of China, Natural Science Foundation of Tianjin City, Natural Science Foundation of Tianjin-Science and Technology Correspondent Project
Openalex Percentile: Top 18%
Advanced biosensing and bioanalysis techniques
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Toward High-Performance in Heavy Metal Detection: Mechanisms and Applications of Amplified Aptasensors — Fengyun Li, Keshu Sun, et al. · Critical Reviews in Analytical Chemistry (2026) | TGRS Research Map | TGRS