May James, Hickey Michelle, Triantis Iasonas, Palazidou Eleni, Kyriacou Panayiotis A
Biomedical Engineering Research Centre, School of Mathematics, Computer Science & Engineering, City University London, London, EC1V 0HB, UK.
Centre for Psychiatry, Barts &The London School of Medicine and Dentistry, Queen Mary University, EC1M 6BQ London, UK.
Biomed Opt Express. 2015 Feb 27;6(3):1067-73. doi: 10.1364/BOE.6.001067. eCollection 2015 Mar 1.
Lithium therapy is the gold standard of treatment for patients with Bipolar Disorder. However, despite its effectiveness, it is a potentially hazardous drug requiring regular monitoring of blood levels to ensure toxic levels are not reached. This paper describes the spectrophotometric analysis of Lithium carbonate in solution as a first step in developing a portable home monitoring device for blood lithium analysis.. Using a high-end spectrophotometer, solutions of lithium carbonate (Li2CO3) have been optically fingerprinted. Preliminary measurements indicate that the ultraviolet region shows a strong distinction between different lithium concentrations. Utilizing second derivative absorption curves, the region of 220 nm to 230 nm demonstrated the ability to differentiate between concentrations representing those found in patients. Furthermore, the method could determine to within a 1-6% accuracy whether an unknown solution of Li2CO3 is either inside or outside the high-end of the therapeutic limit.
锂盐治疗是双相情感障碍患者的治疗金标准。然而,尽管其疗效显著,但它是一种具有潜在危险性的药物,需要定期监测血药浓度以确保未达到中毒水平。本文描述了溶液中碳酸锂的分光光度分析,这是开发用于血液锂分析的便携式家庭监测设备的第一步。使用高端分光光度计,对碳酸锂(Li2CO3)溶液进行了光学指纹识别。初步测量表明,紫外区域在不同锂浓度之间显示出明显差异。利用二阶导数吸收曲线,220nm至230nm区域显示出区分代表患者体内浓度的能力。此外,该方法能够以1-6%的准确度确定未知碳酸锂溶液是否在治疗极限的高端范围内。