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采用中空微针采集猪间质液中锂的治疗水平的光学检测。

Optical Detection of Lithium Therapeutic Levels in Porcine Interstitial Fluid Collected Using a Hollow Microneedle.

出版信息

Annu Int Conf IEEE Eng Med Biol Soc. 2022 Jul;2022:4257-4260. doi: 10.1109/EMBC48229.2022.9871289.

Abstract

Bipolar disorder (BD), a recurrent chronic disorder characterized by mood fluctuating between episodes of mood elevation and depression, is a leading cause of disability worldwide. Lithium is the most widely used medication for management of BD. However, despite its effectiveness in preventing and reducing mood swings and suicidality, it is a potentially hazardous drug. Lithium has a very narrow therapeutic range (0.4-1.2 mmol/L) with the upper limit being uncomfortably close to toxic levels, hence lithium levels should be monitored regularly. The current techniques of monitoring lithium levels require frequent blood tests and elaborate laboratory methods that cannot be translated into point of care devices for personal monitoring. Dermal interstitial fluid (ISF), an underutilized information-rich biofluid, can be accessed using non-invasive techniques and the lithium concentration in ISF has been found to be proportional to concentration in serum. In the current study a microneedle-based sampling method to extract ISF from porcine skin, as it is similar in anatomy to human skin, was employed. Optical determination of lithium therapeutic concentrations in porcine ISF using a colorimetric method based on the reaction between chromogenic agent Quinizarin and Li ion was then performed. The resulting spectra show spectral variations which are related to lithium concentrations in spiked samples of porcine ISF, hence suggesting the feasibility of utilizing ISF for real-time and minimally-invasive lithium drug monitoring.

摘要

双相情感障碍 (BD) 是一种反复发作的慢性疾病,其特征是情绪在情绪高涨和抑郁发作之间波动,是全球致残的主要原因。锂是最广泛用于治疗 BD 的药物。然而,尽管它在预防和减少情绪波动和自杀方面有效,但它是一种潜在的危险药物。锂的治疗范围很窄(0.4-1.2mmol/L),上限与毒性水平非常接近,因此应定期监测锂水平。目前监测锂水平的技术需要频繁的血液检查和复杂的实验室方法,无法转化为个人监测的即时护理设备。皮肤间质液 (ISF) 是一种未充分利用的富含信息的生物流体,可以使用非侵入性技术进行访问,并且已经发现 ISF 中的锂浓度与血清中的浓度成比例。在当前的研究中,采用了一种基于微针的采样方法从猪皮中提取 ISF,因为它在解剖学上与人类皮肤相似。然后使用基于显色剂喹啉嗪和 Li 离子反应的比色法对猪 ISF 中的锂治疗浓度进行光学测定。得到的光谱显示出与猪 ISF 中锂浓度相关的光谱变化,因此表明利用 ISF 进行实时和微创锂药物监测是可行的。

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