Thenrajan Thatchanamoorthy, Selvasundarasekar Sam Sankar, Kundu Subrata, Wilson Jeyaraj
Polymer Electronics Laboratory, Department of Bioelectronics and Biosensors, Alagappa University, Karaikudi, Tamil Nadu 630 003, India.
Electrochemical Process Engineering (EPE) Division, CSIR-Central Electrochemical Research Institute (CECRI), Karaikudi, Tamil Nadu 630003, India.
ACS Omega. 2022 Jun 3;7(23):19754-19763. doi: 10.1021/acsomega.2c01536. eCollection 2022 Jun 14.
Human health-related issues are increasing in day to day life because of the modern and unhygienic food lifestyles. In recent times, green tea (GT) gains more attention due to its numerous health benefits. It contains more biologically active compounds that improve mental health, increase metabolism, reduce cancer risks, and serve as an anti-aging agent for the brain. As it is globally consumed, the evaluation of the compounds present in it is very important. Hence, an attempt has been performed to evaluate these components in GT by using a cobalt nickel iron-based trimetallic zeolitic imidazolate framework as microfibers (CoNiFe-ZIF-MFs) synthesized via an electrospinning technique. Interestingly, the synthesized CoNiFe-ZIF-MFs catalyst simultaneously detects three major catechin (CT) groups, namely, epigallocatechin-3-gallate (EGCG), epicatechin (EC), and epicatechingallate (ECG). Further, the square wave voltammetry findings showed that there is a wide linear range of 50 ng to 1 mg for all the three CTs with LODs 45, 8, and 4 ng for EGCG, EC, and ECG, respectively. These results confirm the excellent sensing behavior of the composite toward GT extracts, proposing its practical utility in real-time compound analysis in food sectors. Other results like stability and reproducibility also promote its usage in the biomedical field. This study mainly focuses on the direct sensing of CTs present in GT without spiking any commercially purchased sample, and the sensing was performed simultaneously for all the three analytes; thus, this work gains novelty from the existing ones.
由于现代且不卫生的饮食生活方式,与人类健康相关的问题在日常生活中日益增多。近年来,绿茶因其众多健康益处而备受关注。它含有更多生物活性化合物,可改善心理健康、提高新陈代谢、降低癌症风险,并作为大脑的抗衰老剂。由于其在全球范围内被消费,对其中所含化合物的评估非常重要。因此,人们尝试通过使用通过静电纺丝技术合成的钴镍铁基三金属沸石咪唑酯骨架作为微纤维(CoNiFe-ZIF-MFs)来评估绿茶中的这些成分。有趣的是,合成的CoNiFe-ZIF-MFs催化剂能同时检测三种主要的儿茶素(CT)基团,即表没食子儿茶素-3-没食子酸酯(EGCG)、表儿茶素(EC)和表儿茶素没食子酸酯(ECG)。此外,方波伏安法结果表明,所有三种CT的线性范围都很宽,为50 ng至1 mg,EGCG、EC和ECG的检测限分别为45、8和4 ng。这些结果证实了该复合材料对绿茶提取物具有优异的传感性能,表明其在食品行业实时化合物分析中的实际应用价值。其他诸如稳定性和重现性等结果也促进了其在生物医学领域的应用。本研究主要关注直接检测绿茶中存在的CT,而不添加任何市售样品,并且对所有三种分析物同时进行传感;因此,这项工作在现有研究中具有新颖性。