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May 31, 2026Exploration0 citationsOpen Access

Revolutionizing Healthcare With Paper‐Based Nucleic Acid Testing

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HZHong ZhangYYYi YangHLHeng Li

Key Points

  • This review aims to discuss advancements in paper-based analytical devices for nucleic acid testing and their potential for improved healthcare diagnostics.
  • Analyzed recent developments in paper-based analytical devices for nucleic acid detection.
  • Evaluated techniques for signal amplification and noise suppression in nucleic acid testing.
  • Focused on user convenience and precision of nucleic acid identification within the devices.
  • Enhanced paper-based devices improve signal amplification for low-concentration nucleic acids.
  • Integration of porous fibers and modified substrates supports effective detection in complex environments.
  • Highlight the advantages of rapid signal output compared to conventional methods.

Abstract

ABSTRACT The rapid and accurate identification of nucleic acids (NAs) is essential to early diagnosis and treatment of disease in healthcare. Paper‐based analytical devices (PADs) offer a preferred alternative to laborious, expensive, and time‐consuming conventional nucleic acid testing (NAT) methods with considerable success. However, their development has been constrained by challenges in NA recognition and signal amplification within a restricted paper fiber network. Recently developed PADs, which establish a three‐dimensional environment for NA reactions by the integration of porous fibers and modified substrate materials, are limited by the precision of base identification and user convenience. In this review, we focus on paper‐based analytical devices with enhanced point‐of‐care applicability for NA detection and discuss the strategies for enhanced NA cascade signal amplification and background noise suppression. Emphasis is placed on the integrated detection of NA molecules from input to output, highlighting the effective signal amplification and rapid signal output of low‐concentration NA molecules of the paper‐based assay in complicated detection systems.

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Cite This Study

Zhang et al. (2026) studied this question.

synapsesocial.com/papers/6a1bd2845783ba022b6fdf59https://doi.org/10.1002/exp.20240128
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