Wnuk Ewa
Department of Biomedicine and Environmental Research, Institute of Biological Sciences, Faculty of Medicine, The John Paul II Catholic University of Lublin, Konstantynow Ave. 1J, 20-708 Lublin, Poland.
Int J Mol Sci. 2025 Aug 16;26(16):7926. doi: 10.3390/ijms26167926.
Black tea is one of the most widely consumed beverages in the world, second only to water. Its properties are primarily due to the presence of polyphenols, which are associated with various effects, including antioxidant, anticancer, antiviral, and anti-inflammatory activities. These compounds include, among others, theaflavins (TFs) and thearubigins (TRs). The available literature provides numerous reports confirming the positive properties of these compounds. However, it is important to highlight their potential protective effects against oxidative stress induced by heavy metals. This is an important topic, given the ongoing exposure to such pollutants-resulting mainly from industrial development, among other factors. This manuscript provides a summary of the current knowledge on the properties of TFs and TRs and their effect against oxidative stress caused by heavy metals in in vitro studies. The limited amount of research in this area shows that this is still a poorly researched topic. Comparing the results obtained for epigallocatechin gallate (EGCG) from green tea, which has a similar structure to TFs and TRs suggests that they may exhibit similar or even enhanced antioxidant properties. Considering that black tea is consumed much more frequently than green tea worldwide, it is understandable that the antioxidant potential of these two compounds on cells needs to be investigated.
红茶是世界上消费最为广泛的饮品之一,仅次于水。其特性主要归因于多酚类物质的存在,这些多酚类物质具有多种功效,包括抗氧化、抗癌、抗病毒和抗炎活性。这些化合物包括茶黄素(TFs)和茶红素(TRs)等。现有文献提供了大量报告证实了这些化合物的积极特性。然而,重要的是要强调它们对重金属诱导的氧化应激的潜在保护作用。鉴于持续接触此类污染物(主要源于工业发展等因素),这是一个重要的课题。本手稿总结了目前关于茶黄素和茶红素特性及其在体外研究中对重金属引起的氧化应激的影响的知识。该领域有限的研究数量表明这仍是一个研究较少的课题。将从绿茶中获得的表没食子儿茶素没食子酸酯(EGCG)(其结构与茶黄素和茶红素相似)的研究结果进行比较表明,它们可能具有相似甚至更强的抗氧化特性。考虑到在全球范围内红茶的消费频率远高于绿茶,那么对这两种化合物对细胞的抗氧化潜力进行研究就不足为奇了。