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用于实时监测、疾病早期诊断和药物治疗监测的微纳增强型血管内生物传感器的最新进展

Recent Advances in Micro- and Nano-Enhanced Intravascular Biosensors for Real-Time Monitoring, Early Disease Diagnosis, and Drug Therapy Monitoring.

作者信息

Kudłacik-Kramarczyk Sonia, Kieres Weronika, Przybyłowicz Alicja, Ziejewska Celina, Marczyk Joanna, Krzan Marcel

机构信息

Jerzy Haber Institute of Catalysis and Surface Chemistry, Polish Academy of Sciences, 8 Niezapominajek St., 30-239 Krakow, Poland.

Faculty of Mechanical Engineering, Cracow University of Technology, 37 Jana Pawła II Av., 31-864 Krakow, Poland.

出版信息

Sensors (Basel). 2025 Aug 7;25(15):4855. doi: 10.3390/s25154855.

Abstract

Intravascular biosensors have become a crucial and novel class of devices in healthcare, enabling the constant real-time monitoring of essential physiological parameters directly within the circulatory system. Recent developments in micro- and nanotechnology have relevantly improved the sensitivity, miniaturization, and biocompatibility of these devices, thereby enabling their application in precision medicine. This review summarizes the latest advances in intravascular biosensor technologies, with a special focus on glucose and oxygen level monitoring, blood pressure and heart rate assessment, and early disease diagnostics, as well as modern approaches to drug therapy monitoring and delivery systems. Key challenges such as long-term biostability, signal accuracy, and regulatory approval processes are critical considerations. Innovative strategies, including biodegradable implants, nanomaterial-functionalized surfaces, and integration with artificial intelligence, are regarded as promising avenues to overcome current limitations. This review provides a comprehensive roadmap for upcoming research and the clinical translation of advanced intravascular biosensors with a strong emphasis on their transformative impact on personalized healthcare.

摘要

血管内生物传感器已成为医疗保健领域中一类至关重要的新型设备,能够在循环系统内直接对重要生理参数进行持续实时监测。微纳技术的最新进展显著提高了这些设备的灵敏度、小型化程度和生物相容性,从而使其能够应用于精准医学。本综述总结了血管内生物传感器技术的最新进展,特别关注血糖和氧水平监测、血压和心率评估、疾病早期诊断,以及药物治疗监测和递送系统的现代方法。诸如长期生物稳定性、信号准确性和监管审批流程等关键挑战是至关重要的考虑因素。包括可生物降解植入物、纳米材料功能化表面以及与人工智能集成在内的创新策略,被视为克服当前局限性的有前景途径。本综述为即将开展的研究以及先进血管内生物传感器的临床转化提供了全面路线图,特别强调了它们对个性化医疗保健的变革性影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6595/12349352/99dbe1f14a7a/sensors-25-04855-g001.jpg

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