NutriFOODChem, Department of Food Technology, Safety and Health, Faculty of Bioscience Engineering, Ghent University, 9000 Ghent, Belgium.
Food Microbiology and Food Preservation, Department of Food Technology, Safety and Health, Faculty of Bioscience Engineering, Ghent University, 9000 Ghent, Belgium.
Nutrients. 2023 Mar 25;15(7):1593. doi: 10.3390/nu15071593.
Rare sugars have recently attracted attention as potential sugar replacers. Understanding the biochemical and biological behavior of these sugars is of importance in (novel) food formulations and prevention of type 2 diabetes. In this study, we investigated whether rare sugars may positively affect intestinal and liver metabolism, as well as muscle insulin sensitivity, compared to conventional sugars. Rare disaccharide digestibility, hepatic metabolism of monosaccharides (respirometry) and the effects of sugars on skeletal muscle insulin sensitivity (impaired glucose uptake) were investigated in, respectively, Caco-2, HepG2 and L6 cells or a triple coculture model with these cells. Glucose and fructose, but not l-arabinose, acutely increased extracellular acidification rate (ECAR) responses in HepG2 cells and impaired glucose uptake in L6 cells following a 24 h exposure at 28 mM. Cellular bioenergetics and digestion experiments with Caco-2 cells indicate that especially trehalose (α1-1α), D-Glc-α1,2-D-Gal, D-Glc-α1,2-D-Rib and D-Glc-α1,3-L-Ara experience delayed digestion and reduced cellular impact compared to maltose (α1-4), without differences on insulin-stimulated glucose uptake in a short-term setup with a Caco-2/HepG2/L6 triple coculture. These results suggest a potential for l-arabinose and specific rare disaccharides to improve metabolic health; however, additional in vivo research with longer sugar exposures should confirm their beneficial impact on insulin sensitivity in humans.
稀有糖最近作为潜在的糖替代品引起了人们的关注。了解这些糖的生化和生物学行为对于(新型)食品配方和预防 2 型糖尿病非常重要。在这项研究中,我们研究了与常规糖相比,稀有糖是否可能对肠道和肝脏代谢以及肌肉胰岛素敏感性产生积极影响。我们分别在 Caco-2、HepG2 和 L6 细胞或这些细胞的三重共培养模型中研究了稀有二糖的消化率、单糖的肝脏代谢(呼吸测定法)以及糖对骨骼肌胰岛素敏感性(葡萄糖摄取受损)的影响。葡萄糖和果糖,但不是 L-阿拉伯糖,在 28mM 下暴露 24 小时后,急性增加 HepG2 细胞的细胞外酸化率(ECAR)反应,并损害 L6 细胞的葡萄糖摄取。与 Caco-2 细胞的细胞生物能量学和消化实验表明,特别是海藻糖(α1-1α)、D-Glc-α1,2-D-Gal、D-Glc-α1,2-D-Rib 和 D-Glc-α1,3-L-Ara 经历延迟消化和降低细胞影响,与麦芽糖(α1-4)相比,在 Caco-2/HepG2/L6 三重共培养的短期设置中,胰岛素刺激的葡萄糖摄取没有差异。这些结果表明 L-阿拉伯糖和特定的稀有二糖有可能改善代谢健康;然而,需要进行更长时间糖暴露的体内研究来证实它们对人类胰岛素敏感性的有益影响。