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December 11, 2025Biosensors2 citationsOpen Access

Polymer-Mediated Signal Amplification Mechanisms for Bioelectronic Detection: Recent Advances and Future Perspectives

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YSYing SunDGDan Gao

Key Points

  • To summarize the advancements in polymer-mediated signal amplification for bioelectronic detection.
  • Review of various polymers including conductive, molecularly imprinted, hydrogels, and composite polymers.
  • Analysis of signal amplification mechanisms and optimization strategies in biosensing applications.
  • Polymers improve detection performance and stability in medical diagnosis and environmental monitoring.
  • The study highlights the roles of molecular structures, biocompatibility, and electronic transport properties.

Abstract

In recent years, polymer-mediated signal amplification has drawn wide attention in bioelectronic sensing. With the rapid progress of biosensing and flexible electronics, polymers with excellent electron–ion transport properties, tunable molecular structures, and good biocompatibility have become essential materials for enhancing detection sensitivity and interfacial stability. However, current sensing systems still face challenges such as signal attenuation, surface fouling, and multi-component interference in complex biological environments, limiting their use in medical diagnosis and environmental monitoring. This review summarizes the progress of conductive polymers, molecularly imprinted polymers, hydrogels, and composite polymers in medical diagnosis, food safety, and environmental monitoring, focusing on their signal amplification mechanisms and structural optimization strategies in electronic transport regulation, molecular recognition enhancement, and antifouling interface design. Overall, polymers improve detection performance through interfacial electronic reconstruction and multidimensional synergistic amplification, offering new ideas for developing highly sensitive, stable, and intelligent biosensors. In the future, polymer-based amplification systems are expected to expand in multi-parameter integrated detection, long-term wearable monitoring, and in situ analysis of complex samples, providing new approaches to precision medicine and sustainable environmental health monitoring.

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Cite This Study

Sun et al. (2025) studied this question.

synapsesocial.com/papers/69401b0d2d562116f28f7116https://doi.org/10.3390/bios15120808
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