Institute of Molecular Biology and Genetics, National Academy of Sciences of Ukraine, 150 Zabolotnyi Str., 03680 Kyiv, Ukraine.
Institute of Biology and Medicine, Taras Shevchenko National University of Kyiv, Volodymyrska Street 64, 01003 Kyiv, Ukraine.
Sensors (Basel). 2024 Jul 18;24(14):4672. doi: 10.3390/s24144672.
The present study reports on the development, adaptation, and optimization of a novel monoenzyme conductometric biosensor based on a recombinant arginine deiminase (ADI) for the determination of arginine in dietary supplements with a high accuracy of results. Aiming for the highly sensitive determination of arginine in real samples, we studied the effect of parameters of the working buffer solution (its pH, buffer capacity, ionic strength, temperature, and protein concentration) on the sensitivity of the biosensor to arginine. Thus, it was determined that the optimal buffer is a 5 mM phosphate buffer solution with pH 6.2, and the optimal temperature is 39.5 °C. The linear functioning range is 2.5-750 µM of L-arginine with a minimal limit of detection of 2 µM. The concentration of arginine in food additive samples was determined using the developed ADI-based biosensor. Based on the obtained results, the most effective method of biosensor analysis using the method of standard additions was chosen. It was also checked how the reproducibility of the biosensor changes during the analysis of pharmaceutical samples. The results of the determination of arginine in real samples using a conductometric biosensor based on ADI clearly correlated with the data obtained using the method of ion-exchange chromatography and enzymatic spectrophotometric analysis. We concluded that the developed biosensor would be effective for the accurate and selective determination of arginine in dietary supplements intended for the prevention and/or elimination of arginine deficiency.
本研究报告了一种新型单酶电导生物传感器的开发、适应和优化,该传感器基于重组精氨酸脱亚氨酶(ADI),用于测定膳食补充剂中的精氨酸,结果具有高度准确性。为了实现对真实样品中精氨酸的高灵敏度测定,我们研究了工作缓冲溶液(其 pH 值、缓冲能力、离子强度、温度和蛋白质浓度)参数对生物传感器对精氨酸敏感性的影响。因此,确定最佳缓冲液是 pH 值为 6.2 的 5 mM 磷酸盐缓冲液,最佳温度为 39.5°C。线性工作范围为 2.5-750 µM L-精氨酸,检测限最小为 2 µM。采用开发的基于 ADI 的生物传感器测定食品添加剂样品中的精氨酸浓度。基于获得的结果,选择了使用标准添加法的最有效生物传感器分析方法。还检查了在分析药物样品时生物传感器分析的重现性如何变化。使用基于 ADI 的电导生物传感器测定真实样品中精氨酸的结果与使用离子交换色谱和酶分光光度分析方法获得的数据明显相关。我们得出结论,开发的生物传感器将有效地用于准确和选择性地测定旨在预防和/或消除精氨酸缺乏症的膳食补充剂中的精氨酸。