Ferreira Cirley Pinheiro, Techera Antunes Flavia Tasmim, Rebelo Isadora Nunes, da Silva Claudio Antônio, Vilanova Fernanda Nunes, Corrêa Dione Silva, de Souza Alessandra Hubner
Postgraduate Program in Genetics and Applied Toxicology, Lutheran University of Brazil (ULBRA), 92425-900 Canoas, RS, Brazil.
Postgraduate Program in Cellular and Molecular Biology Applied to Health, (PPGBioSaúde), Lutheran University of Brazil (ULBRA), 92425-900 Canoas, RS, Brazil.
J Pharm Biomed Anal. 2020 Jul 15;186:113290. doi: 10.1016/j.jpba.2020.113290. Epub 2020 Apr 4.
In experimental nociception models, there is an increase in the glutamate cerebrospinal fluid (CSF) and a decrease in its levels in analgesic treatments. For the determination of glutamate in CSF, an analytical UV spectrophotometric method was developed and validated. The measurements on the UV-vis spectrophotometer were performed after the derivatization reaction of the neurotransmitter, when reading in the ultraviolet (UV) region, at the maximum absorption wavelength of 265 nm. The technique presented excellent linearity, as well as good intraday and interday precision, with coefficients of variation less than 15 %, and a correlation coefficient close to 1.0 (lower dispersion of the experimental set points and lower uncertainty of the estimated regression coefficients). The analytical conditions that were established by the ultraviolet spectrophotometric method demonstrated selectivity, linearity, precision, specificity, robustness, and accuracy. This is suitable for the quantitative determination of glutamate in the CSF. The technique developed by UV-vis spectrophotometry for glutamate dosing was fast, efficient, easy to perform, and more economically accessible when compared to current standard techniques. When comparing the data obtained in this study with the results of the official methodology, in which HPLC and spectrofluorimetry were used, it was observed that the closest values of glutamate release occurred between the spectrofluorimeter and the UV-vis spectrophotometer. The UV-vis spectrophotometry method for the determination of CSF glutamate has been shown to be accurate, reproducible, and satisfactory, making it an extremely advantageous and a viable alternative for the determination of amino acid glutamate.
在实验性伤害感受模型中,脑脊液(CSF)中的谷氨酸水平会升高,而在镇痛治疗中其水平会降低。为了测定脑脊液中的谷氨酸,开发并验证了一种分析紫外分光光度法。在神经递质的衍生化反应后,于紫外可见分光光度计上进行测量,在紫外(UV)区域读取数据,最大吸收波长为265nm。该技术呈现出出色的线性,以及良好的日内和日间精密度,变异系数小于15%,相关系数接近1.0(实验设定点的离散度较低,估计回归系数的不确定性较低)。紫外分光光度法建立的分析条件显示出选择性、线性、精密度、特异性、稳健性和准确性。这适用于脑脊液中谷氨酸的定量测定。与当前标准技术相比,紫外可见分光光度法开发的谷氨酸定量技术快速、高效、易于操作且成本更低。当将本研究获得的数据与使用高效液相色谱法(HPLC)和荧光分光光度法的官方方法的结果进行比较时,发现荧光分光光度计和紫外可见分光光度计之间谷氨酸释放值最为接近。已证明用于测定脑脊液谷氨酸的紫外可见分光光度法准确、可重现且令人满意,使其成为测定氨基酸谷氨酸极具优势且可行的替代方法。