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Microneedle-based detection of nucleic acids in interstitial fluid: A review
Hongbo Liu1, Haotian Zheng1, Niancai Peng1
1School of Instrument Science and Technology, State Key Laboratory for Manufacturing System Engineering, Xi'an Jiaotong University, Xi'an, 710049, Shaanxi, PR China; State Industry-Education Integration Center for Medical Innovations, Xi'an Jiaotong University, Xi'an, 710054, Shaanxi, PR China; Key Laboratory of Advanced Biological Detection Technologies and Instruments of Shaanxi Province, Xi'an Jiaotong University, Xi'an, 710054, Shaanxi, PR China.
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Traditional nucleic acid detection methods rely on external sampling and complex, multi-step offline analyses, which result in long turnaround times and require specialized laboratory infrastructure. Recent advancements in microneedle (MN)-based technologies have transformed interstitial fluid (ISF) sampling by enabling minimally invasive and real-time monitoring of biomarkers. This review systematically discusses the development of MN-mediated ISF nucleic acid detection platforms, with emphasis on four key areas: (1) The principles and optimization of MN-based ISF sampling, encompassing fabrication techniques and extraction mechanisms such as negative pressure, swelling, and capillary action; (2) Nucleic acid enrichment and amplification strategies specifically adapted for ISF, including isothermal amplification and hybridization-based methods; (3) The development and targeting MN-based nucleic acid sensing tools; and (4) Medical translation and continuous monitoring pose challenges. This review synthesizes recent progress, highlights technical bottlenecks, and offers insights to support the translational development of clinically viable MN-based ISF nucleic acid detection systems for precision diagnostics and chronic disease surveillance.

