Department of Pharmaceutical Botany, Ankara University, Faculty of Pharmacy, Ankara, Turkey.
Ankara University, Graduate School of Health Sciences, Ankara, Turkey.
Anal Methods. 2024 Mar 7;16(10):1480-1488. doi: 10.1039/d3ay02318d.
Rutin (RUT), a natural flavonoid with various beneficial pharmacological actions such as cardioprotective, antioxidant, anti-inflammatory, neuroprotective, , is found in the content of many plants that are consumed daily. Due to the healthful effects, RUT is also included in the composition of various herbal supplement samples. Therefore, it is highly important to develop a sensor with high selectivity and sensitivity to determine RUT in complex samples. In this study, it was aimed to take advantage of the cheap, easy, and sensitive nature of electrochemistry and, in addition, to improve the selectivity. For this purpose, the functional monomer selected in the fabricated molecularly imprinted polymer (MIP) was -methacryloyl-L-aspartic acid (MA-Asp) while photopolymerization (PP) was applied as the polymerization route. After completing critical optimization steps, the developed sensor (MA-Asp@RUT/MIP-GCE) was characterized electrochemically and morphologically. As a result of analytical performance evaluation in standard solution, the linear response of the sensor was found in the concentration range between 1 and 10 pM with a detection limit of 0.269 pM. The recovery studies from plant extract and commercial herbal supplement samples emphasized accuracy and applicability. In imprinting factor studies figuring out quite good selectivity, molecules with a structure similar to RUT were selected as competitors to prove the affinity of the sensor against RUT. Consequently, the MA-Asp@RUT/MIP-GCE sensor offers a more sensitive and selective method thanks to its indirect analysis approach and also stands out with the diversity of its real sample application compared to other available studies.
芦丁(RUT)是一种天然类黄酮,具有多种有益的药理作用,如心脏保护、抗氧化、抗炎、神经保护等,存在于许多日常食用的植物中。由于其健康益处,RUT 也包含在各种草药补充剂样品的成分中。因此,开发一种具有高选择性和灵敏度的传感器来测定复杂样品中的 RUT 非常重要。在这项研究中,旨在利用电化学的廉价、简便和灵敏的特点,并提高选择性。为此,所制备的分子印迹聚合物(MIP)中选择的功能单体为 - 丙烯酰基 -L- 天冬氨酸(MA-Asp),同时应用光聚合(PP)作为聚合途径。在完成关键的优化步骤后,对开发的传感器(MA-Asp@RUT/MIP-GCE)进行了电化学和形态学表征。作为在标准溶液中进行分析性能评估的结果,该传感器的线性响应在 1 到 10 pM 的浓度范围内发现,检测限为 0.269 pM。从植物提取物和商业草药补充剂样品中的回收研究强调了准确性和适用性。在印迹因子研究中,选择与 RUT 结构相似的分子作为竞争物以证明传感器对 RUT 的亲和力,从而表现出相当好的选择性。因此,与其他可用研究相比,MA-Asp@RUT/MIP-GCE 传感器由于其间接分析方法提供了更灵敏和选择性的方法,并且在实际样品应用的多样性方面也脱颖而出。