Department of Engineering Physics, McMaster University Hamilton, Hamilton, L8S 4L8, Ontario, Canada.
Department of Electrical and Computer Engineering, University of Waterloo, Waterloo, N2L 3G1, Canada.
Adv Mater. 2024 Aug;36(35):e2313743. doi: 10.1002/adma.202313743. Epub 2024 Jun 17.
Continuous monitoring of clinically relevant biomarkers within the interstitial fluid (ISF) using microneedle (MN)-based assays, has the potential to transform healthcare. This study introduces the Wearable Aptalyzer, an integrated system fabricated by combining biocompatible hydrogel MN arrays for ISF extraction with an electrochemical aptamer-based biosensor for in situ monitoring of blood analytes. The use of aptamers enables continuous monitoring of a wide range of analytes, beyond what is possible with enzymatic monitoring. The Wearable Aptalyzer is used for real-time and multiplexed monitoring of glucose and lactate in ISF. Validation experiments using live mice and rat models of type 1 diabetes demonstrate strong correlation between the measurements collected from the Wearable Aptalyzer in ISF and those obtained from gold-standard techniques for blood glucose and lactate, for each analyte alone and in combination. The Wearable Aptalyzer effectively addresses the limitations inherent in enzymatic detection methods as well as solid MN biosensors and the need for reliable and multiplexed bioanalytical monitoring in vivo.
利用基于微针(MN)的分析方法对细胞间液(ISF)中的临床相关生物标志物进行连续监测,有可能改变医疗保健模式。本研究介绍了 Wearable Aptalyzer,这是一个集成系统,通过将用于 ISF 提取的生物相容性水凝胶 MN 阵列与基于电化学适体的生物传感器结合在一起制造而成,用于原位监测血液分析物。适体的使用使得能够对多种分析物进行连续监测,这超出了酶监测的范围。Wearable Aptalyzer 用于实时和多重监测 ISF 中的葡萄糖和乳酸。使用活鼠和 1 型糖尿病大鼠模型进行的验证实验表明,Wearable Aptalyzer 在 ISF 中收集的测量值与金标准技术(用于血糖和乳酸的技术)单独和组合测量值之间存在很强的相关性。Wearable Aptalyzer 有效地解决了酶检测方法以及固态 MN 生物传感器固有的局限性,以及对体内可靠和多重生物分析监测的需求。