Key Lab of New Animal Drug Project of Gansu Province, Key Lab of Veterinary Pharmaceutical Development of Ministry of Agriculture and Rural Affairs, Lanzhou Institute of Husbandry and Pharmaceutical Sciences of CAAS, Lanzhou 730050, China.
College of Life Sciences, South China Agricultural University, Guangzhou 510642, China.
Molecules. 2023 Jun 6;28(12):4569. doi: 10.3390/molecules28124569.
Resveratrol has anti-inflammatory, anti-cancer, and anti-aging pharmacological activities. There is currently a gap in academic research regarding the uptake, transport, and reduction of HO-induced oxidative damage of resveratrol in the Caco-2 cell model. This study investigated the role of resveratrol in the uptake, transport, and alleviation of HO-induced oxidative damage in Caco-2 cells. In the Caco-2 cell transport model, it was observed that the uptake and transport of resveratrol (10, 20, 40, and 80 μM) were time dependent and concentration dependent. Different temperatures (37 °C vs. 4 °C) could significantly affect the uptake and transportation of resveratrol. The apical to basolateral transport of resveratrol was markedly reduced by STF-31, a GLUT1 inhibitor, and siRNA intervention. Furthermore, resveratrol pretreatment (80 μM) improves the viability of Caco-2 cells induced by HO. In a cellular metabolite analysis combined with ultra-high performance liquid chromatography-tandem mass spectrometry, 21 metabolites were identified as differentials. These differential metabolites belong to the urea cycle, arginine and proline metabolism, glycine and serine metabolism, ammonia recycling, aspartate metabolism, glutathione metabolism, and other metabolic pathways. The transport, uptake, and metabolism of resveratrol suggest that oral resveratrol could prevent intestinal diseases caused by oxidative stress.
白藜芦醇具有抗炎、抗癌和抗衰老的药理作用。目前,在学术研究中,尚存在关于白藜芦醇在 Caco-2 细胞模型中摄取、转运和还原 HO 诱导的氧化损伤的空白。本研究探讨了白藜芦醇在 Caco-2 细胞中摄取、转运和缓解 HO 诱导的氧化损伤中的作用。在 Caco-2 细胞转运模型中,观察到白藜芦醇(10、20、40 和 80 μM)的摄取和转运具有时间依赖性和浓度依赖性。不同温度(37°C 与 4°C)可显著影响白藜芦醇的摄取和转运。GLUT1 抑制剂 STF-31 和 siRNA 干预明显降低了白藜芦醇的顶端到基底外侧转运。此外,HO 诱导的 Caco-2 细胞活力可通过白藜芦醇预处理(80 μM)得到改善。在结合超高效液相色谱-串联质谱的细胞代谢产物分析中,鉴定出 21 种差异代谢物。这些差异代谢物属于尿素循环、精氨酸和脯氨酸代谢、甘氨酸和丝氨酸代谢、氨循环、天冬氨酸代谢、谷胱甘肽代谢和其他代谢途径。白藜芦醇的转运、摄取和代谢表明,口服白藜芦醇可以预防由氧化应激引起的肠道疾病。