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A novel method for measuring the ATP-related compounds in human erythrocytes

机译:一种测量人红细胞中ATP相关化合物的新方法

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The ATP-related compounds in whole blood or red blood cells have been used to evaluate the energy status of erythrocytes and the degradation level of the phosphorylated compounds under various conditions, such as chronic renal failure, drug monitoring, cancer, exposure to environmental toxics, and organ preservation. The complete interpretation of the energetic homeostasis of erythrocytes is only performed using the compounds involved in the degradation pathway for adenine nucleotides alongside the uric acid value. For the first time, we report a liquid chromatographic method using a diode array detector that measures all of these compounds in a small human whole blood sample (125 μ L) within an acceptable time of 20 min. The stability was evaluated for all of the compounds and ranged from 96.3 to 105.1% versus the day zero values. The measurement had an adequate sensitivity for the ATP-related compounds (detection limits from 0.001 to 0.097 μ mol/L and quantification limits from 0.004 to 0.294 μ mol/L). This method is particularly useful for measuring inosine monophosphate, inosine, hypoxanthine, and uric acid. Moreover, this assay had acceptable linearity (r > 0.990), precision (coefficients of variation ranged from 0.1 to 2.0%), specificity (similar retention times and spectra in all samples) and recoveries (ranged from 89.2 to 104.9%). The newly developed method is invaluable for assessing the energetic homeostasis of red blood cells under diverse conditions, such as in vitro experiments and clinical settings.
机译:全血或红细胞中与ATP相关的化合物已被用于评估各种条件下红细胞的能量状态和磷酸化化合物的降解水平,例如慢性肾功能衰竭,药物监测,癌症,暴露于环境毒性,和器官保存。仅使用腺嘌呤核苷酸降解途径中所涉及的化合物以及尿酸值来对红细胞的能量稳态进行完整的解释。我们首次报告了使用二极管阵列检测器的液相色谱方法,该方法可在20分钟的可接受时间内测量少量人类全血样品(125μL)中的所有这些化合物。评估了所有化合物的稳定性,相对于零天值,其稳定性为96.3%至105.1%。该测量对ATP相关化合物具有足够的灵敏度(检测限为0.001至0.097μmol / L,定量限为0.004至0.294μmol / L)。该方法对于测量肌苷一磷酸,肌苷,次黄嘌呤和尿酸特别有用。此外,该测定具有可接受的线性(r> 0.990),精密度(变异系数在0.1%至2.0%范围内),特异性(在所有样品中相似的保留时间和光谱)和回收率(在89.2%至104.9%之间)。新开发的方法对于评估各种条件下(如体外实验和临床设置)红细胞的能量稳态具有无价的作用。

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