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Near infrared spectrometric investigation of lactate in a varying pH buffer

机译:不同pH缓冲液中乳酸乳酸的近红外光谱研究

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摘要

Lactic acidosis is commonly observed in various disease states in critical care and can be adopted as a hemodynamic biomarker, as well as a target for therapy. pH is the main biomarker for the diagnosis of acid-base disorders and is currently measured utilizing invasive blood sampling techniques. Therefore, there is a need for a non-invasive and continuous technology for the measurement of pH and lactate levels. In this work, near infrared spectroscopy is explored as a technique for investigating lactic acidosis. In-vitro studies on 20 isotonic phosphate buffer solutions of varying pH with constant lactate concentration (2 mmol/L) were performed. The whole near infrared spectrum (800-2600 nm) was then divided into four parts for analysis: (a) water absorption peaks, (b) 1000-1250 nm, (c) 1700-1760 nm, and (d) 2200-2400 nm. The water absorption peaks showed a linear variation with the changes in pH in the spectra. The range from 1700-1760 nm showed good correlation with calculated values for lactate ionization, with the changes in pH. However, the region from 2200-2400 nm showed a reverse correlation with respect to the concentration changes of lactate and a distinction could be made from pH 6-7 and 7-8. This study successfully identifies wavelengths (1233 nm, 1710 nm, 1750 nm, 2205 nm, 2319 nm, and 2341 nm) which can be directly correlated to lactic acidosis. Knowledge from this study will contribute toward the development of lactate-based pH monitoring optical sensor for critical care.
机译:在临界护理中的各种疾病状态中通常观察到乳酸中毒,可以作为血流动力学生物标志物以及治疗靶标。 pH是用于诊断酸碱疾病的主要生物标志物,目前正在利用侵入性血液采样技术测量。因此,需要一种用于测量pH和乳酸水平的非侵入性和连续技术。在这项工作中,探讨了近红外光谱作为研究乳酸中毒的技术。进行对20个等渗磷酸盐缓冲溶液的体外研究,其具有恒定乳酸浓度(2mmol / L)的不同pH值。然后将整个近红外光谱(800-2600nm)分为四个部分进行分析:(a)吸水峰,(b)1000-1250nm,(c)1700-1760nm,(d)2200-2400 nm。吸水峰显示出线性变化随着光谱中的pH的变化。从pH的变化,1700-1760nm的范围显示出与计算值的乳酸乳酸电离的值相关。然而,来自2200-2400nm的区域表现出相对于乳酸盐的浓度变化的反向相关性,并且可以由pH 6-7和7-8进行区分。该研究成功地识别波长(1233nm,1710nm,1750nm,2205nm,2319nm,2341nm),其可以与乳酸中药直接相关。本研究的知识将有助于开发基于乳酸的pH监测光学传感器,用于关键护理。

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