Department of Mathematics and Sciences, College of Arts and Applied Sciences, Dhofar University, Salalah, PC 211, Oman.
Department of Chemical Engineering, College of Engineering, Dhofar University, Salalah, PC 211, Oman.
Sci Rep. 2023 Nov 22;13(1):20482. doi: 10.1038/s41598-023-46774-w.
In modern era, deficiency of Vitamin D3 is predominantly due to limited exposure to sunlight and UV radiation resulting from indoor lifestyles. Several studies have revealed that vitamin D deficiency can lead to chronic vascular inflammation, diabetes mellitus, hypertension, congestive left ventricular hypertrophy, and heart failure. This study introduces a green synthesis of novel bimetallic nanoporous composite, CuO/Ag using lemon extract. The synthesized nanoporous material, CuO/Ag@lemon extract was characterized using several analytical techniques, including X-ray diffraction (XRD), transmission electron microscopy (TEM), scanning electron microscopy (SEM), and energy-dispersive X-ray spectroscopy (EDX). The CuO/Ag@lemon extract nanoparticles were immobilized on glassy carbon electrode (GCE) to prepare modified CuO/Ag@lemon extract-GCE interface. The electrocatalytic and electrochemical properties investigation was carried out on the modified electrode. using cyclic voltammetry (CV), differential pulse voltammetry (DPV), and amperometry for detecting of Vitamin D3. The DPV method displayed a linear response range of 0.02-22.5 µM with a detection limit of 2.62 nM, while the amperometric method showed a broader linear range of 0.25-23.25 µM with a detection limit of 2.70 nM with 82% modified electrode stability. The designed electrode exhibited a positive response to the inclusion of Vitamin D3 with electro-oxidation, reaching steady-state within 3.4 s, with 87% reproducibility within a day. The proposed method offers a rapid and sensitive platform for detection of Vitamin D3 with minimal interference from other molecules. The early diagnosis of Vitamin D3 deficiency using modified electrodes allows for early treatment, thereby preventing severe health complications.
在现代,维生素 D3 的缺乏主要是由于室内生活方式导致阳光和紫外线辐射有限。有几项研究表明,维生素 D 缺乏会导致慢性血管炎症、糖尿病、高血压、充血性左心室肥厚和心力衰竭。本研究介绍了一种使用柠檬提取物合成新型双金属纳米多孔复合材料 CuO/Ag 的绿色方法。所合成的纳米多孔材料 CuO/Ag@lemon extract 使用几种分析技术进行了表征,包括 X 射线衍射 (XRD)、透射电子显微镜 (TEM)、扫描电子显微镜 (SEM) 和能量色散 X 射线光谱 (EDX)。将 CuO/Ag@lemon extract 纳米粒子固定在玻碳电极 (GCE) 上,制备修饰的 CuO/Ag@lemon extract-GCE 界面。使用循环伏安法 (CV)、差分脉冲伏安法 (DPV) 和安培法对修饰电极进行了电催化和电化学性质的研究,用于检测维生素 D3。DPV 法显示出 0.02-22.5 μM 的线性响应范围,检测限为 2.62 nM,而安培法显示出 0.25-23.25 μM 的更宽线性范围,检测限为 2.70 nM,修饰电极稳定性为 82%。设计的电极对维生素 D3 的存在表现出正向响应,通过电氧化达到稳态只需 3.4 s,在一天内具有 87%的重现性。该方法提供了一个快速灵敏的检测维生素 D3 的平台,对其他分子的干扰最小。使用修饰电极对维生素 D3 缺乏症进行早期诊断可以进行早期治疗,从而防止严重的健康并发症。