Fan Yueqin, Lei Zhendong, Huang Jiasheng, Su Dan, Ni Dejiang, Chen Yuqiong
National Key Laboratory for Germplasm Innovation and Utilization for Fruit and Vegetable Horticultural Crops, Wuhan 430070, China.
College of Horticulture & Forestry Sciences, Huazhong Agricultural University, Wuhan 430070, China.
Foods. 2023 Apr 1;12(7):1487. doi: 10.3390/foods12071487.
This paper investigated the effect and mechanism of theaflavins (TFs) on fluoride (F) uptake and transport in the Caco-2 cell model through structural chemistry and transcriptome analysis. The results showed that the four major TFs (TF, TF3G, TF3'G and TFDG) at a 150 μg/mL concentration could all significantly decrease F transport in Caco-2 cells after 2 h of treatment and, at 2 μg/mL F concentration, the F transport was more inclined to efflux. During transport, the F retention in Caco-2 cells was significantly increased by TF3G while it was clearly decreased by TF. The interaction between TFs and F was analyzed by Raman spectroscopy and isothermal titration calorimetry, and F was shown to affect the π bond vibration on the benzene ring of TFs, thus influencing their stability. Additionally, F showed weak binding to TF3G, TF3'G and TFDG, which may inhibit F transport and absorption in the Caco-2 cell line. Transcriptome and RT-PCR analysis identified three key differentially expressed genes related to cell permeability, and TFs can be assumed to mediate F transport by regulating the expression of permeability-related genes to change cell monolayer permeability and enhance cell barrier function; however, this needs to be further elucidated in future studies.
本文通过结构化学和转录组分析,研究了茶黄素(TFs)对Caco-2细胞模型中氟(F)摄取和转运的影响及机制。结果表明,浓度为150μg/mL的四种主要茶黄素(TF、TF3G、TF3'G和TFDG)在处理2小时后均能显著降低Caco-2细胞中的F转运,在F浓度为2μg/mL时,F转运更倾向于外排。在转运过程中,TF3G显著增加了Caco-2细胞中F的滞留,而TF则使其明显降低。通过拉曼光谱和等温滴定量热法分析了茶黄素与F之间的相互作用,结果表明F会影响茶黄素苯环上的π键振动,从而影响其稳定性。此外,F与TF3G、TF3'G和TFDG表现出较弱的结合,这可能会抑制Caco-2细胞系中F的转运和吸收。转录组和RT-PCR分析确定了三个与细胞通透性相关的关键差异表达基因,可以推测茶黄素通过调节通透性相关基因的表达来介导F转运,从而改变细胞单层通透性并增强细胞屏障功能;然而,这需要在未来的研究中进一步阐明。