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Towards a quantum cascade laser-based implant for the continuous monitoring of glucose

机译:朝向量子级联激光的植入物,用于连续监测葡萄糖

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摘要

Continuous glucose monitoring enables an improved disease management for people with diabetes. However, state-of-the-art, enzyme-based, minimally invasive sensors lose their sensitivity over time and have to be replaced periodically. Here, we present the in vitro investigation of a quantum cascade laser-based measurement scheme that conceptually should be applicable over elongated periods of time due to its reagent-free nature and may therefore be considered as an approach towards long-term implantation. The method uses a miniaturized optofluidic interface in transflection geometry to measure the characteristic mid-infrared absorption properties of glucose. A glucose sensitivity of 3.2 mg dL(-1) is achieved in aqueous glucose solutions. While this sensitivity drops to 12 mg dL(-1) in the presence of biologically plausible, maximum concentrations of other monosaccharides, it is still well within the medically acceptable range according to Parkes error grid analysis. With a response time of less than five minutes, our sensor should be able to react adequately fast to physiological changes in glucose concentration. Finally, no drift or deterioration was found during an extended, 42 days in vitro experiment. These results underline the potential of this technique for its conceivable applicability in vivo as a long-term glucose monitoring implant.
机译:连续葡萄糖监测能够改善患有糖尿病的疾病管理。然而,最先进的,基于酶,微创传感器随着时间的推移而失去灵敏度,并且必须定期更换。在这里,我们介绍了对基于量子级联激光的测量方案的体外研究,这些测量方案的测量方案概念性地应适用于其无试剂性质的细长时间,因此可以被认为是长期植入的方法。该方法采用小型化的Optof流体界面在转射几何形状中测量葡萄糖的特征中红外吸收性能。在葡萄糖溶液中实现了3.2mg DL(-1)的葡萄糖敏感性。虽然这种敏感性在存在生物合理的,最大浓度的其他单糖的存在下滴到12mg dl(-1),但根据帕克斯误差网格分析,它仍然在医学上可接受的范围内。在响应时间不到五分钟,我们的传感器应该能够充分快速地对葡萄糖浓度的生理变化进行反应。最后,在体外实验中延长42天内没有发现漂移或恶化。这些结果强调了该技术的潜力在体内可想到的是长期葡萄糖监测植入物。

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