Charithra Madikeri Manjunath, Manjunatha Jamballi Gangadharappa Gowda, Raril Chenthattil
Department of Chemistry, FMKMC College, Mangalore University Constituent College, Madikeri, Karnataka, India.
Adv Pharm Bull. 2020 Jun;10(2):247-253. doi: 10.34172/apb.2020.029. Epub 2020 Feb 18.
Estriol (ERL) is a type of hormone among the groups of estrogen hormone that was detected through the voltammetric technique by constructing an electrochemical sensor based on the octoxynol-9 modified graphite paste electrode (OXL-9MGPE). Using the strategy of cyclic voltammetry (CV) and differential pulse voltammetry (DPV) with a bare graphite paste electrode (BGPE) immobilized with OXL-9, ERL electro-oxidation has been assessed in 0.2 M phosphate buffer solution (PBS) of pH 6.0. The fabricated electrode has substantial electrochemical sensing efficiency, and the ERL oxidation at the OXL-9MGPE was the irreversible process. The surface morphological characteristics of BGPE and OXL-9MGPE were differentiated with the help of field emission scanning electron microscopy (FE-SEM). The impact of various factors such as scan rate, pH, reproducibility, repeatability, and stability on the electro-oxidation of ERL was evaluated. Techniques of CV and DPV were utilized to determine ERL, dopamine (DAN), and uric acid (URA) simultaneously with the projected sensor. The peak current was varied with ERL concentration in the range from 4×10 to 1.2×10 M at OXL-9MGPE. From this, the detection limit 1.4×10 M and limit of quantification (LOQ) 4.7×10 M have been attained. As a result, OXL-9MGPE was successfully achieved as an electrochemical detector for the electro analysis of ERL via the CV technique.
雌三醇(ERL)是雌激素类激素中的一种,通过构建基于聚氧乙烯壬基苯基醚-9修饰石墨糊电极(OXL-9MGPE)的电化学传感器,采用伏安法检测到了它。利用循环伏安法(CV)和差分脉冲伏安法(DPV)策略,在固定有OXL-9的裸石墨糊电极(BGPE)上,对pH为6.0的0.2 M磷酸盐缓冲溶液(PBS)中的ERL电氧化进行了评估。制备的电极具有显著的电化学传感效率,并且在OXL-9MGPE上的ERL氧化是不可逆过程。借助场发射扫描电子显微镜(FE-SEM)区分了BGPE和OXL-9MGPE的表面形态特征。评估了扫描速率、pH值、重现性、重复性和稳定性等各种因素对ERL电氧化的影响。利用CV和DPV技术,使用所设计的传感器同时测定ERL、多巴胺(DAN)和尿酸(URA)。在OXL-9MGPE上,峰值电流随ERL浓度在4×10至1.2×10 M范围内变化。由此,获得了检测限1.4×10 M和定量限(LOQ)4.7×10 M。结果,通过CV技术成功实现了OXL-9MGPE作为用于ERL电分析的电化学检测器。