Real-time intradermal continuous glucose monitoring using a minimally invasive microneedle-based system

生物医学工程 透皮 材料科学 微加工 间质液 毛细管作用 血糖监测 血糖自我监测 计算机科学 连续血糖监测 医学 复合材料 病理 制作 替代医学 内分泌学 糖尿病 胰岛素 内科学 药理学 血糖性
作者
Federico Ribet,Göran Stemme,Niclas Roxhed
出处
期刊:Biomedical Microdevices [Springer Nature]
卷期号:20 (4) 被引量:128
标识
DOI:10.1007/s10544-018-0349-6
摘要

Continuous glucose monitoring (CGM) has the potential to greatly improve diabetes management. The aim of this work is to show a proof-of-concept CGM device which performs minimally invasive and minimally delayed in-situ glucose sensing in the dermal interstitial fluid, combining the advantages of microneedle-based and commercially available CGM systems. The device is based on the integration of an ultra-miniaturized electrochemical sensing probe in the lumen of a single hollow microneedle, separately realized using standard silicon microfabrication methods. By placing the sensing electrodes inside the lumen facing an opening towards the dermal space, real-time measurement purely can be performed relying on molecular diffusion over a short distance. Furthermore, the device relies only on passive capillary lumen filling without the need for complex fluid extraction mechanisms. Importantly, the transdermal portion of the device is 50 times smaller than that of commercial products. This allows access to the dermis and simultaneously reduces tissue trauma, along with being virtually painless during insertion. The three-electrode enzymatic sensor alone was previously proven to have satisfactory sensitivity (1.5 nA/mM), linearity (up to 14 mM), selectivity, and long-term stability (up to 4 days) in-vitro. In this work we combine this sensor technology with microneedles for reliable insertion in forearm skin. In-vivo human tests showed the possibility to correctly and dynamically track glycaemia over time, with approximately 10 min delay with respect to capillary blood control values, in line with the expected physiological lag time. The proposed device can thus reduce discomfort and potentially enable less invasive real-time CGM in diabetic patients.
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