Department of Biochemistry, Medical College of Wisconsin, Milwaukee, WI 53226, USA.
INSERM U1212, CNRS UMR5320, ARNA Laboratory, University of Bordeaux, 33000 Bordeaux, France.
Nutrients. 2023 Feb 23;15(5):1118. doi: 10.3390/nu15051118.
Non-nutritive sweeteners (NNS) are popular sugar replacements used in foods, beverages, and medications. Although NNS are considered safe by regulatory organizations, their effects on physiological processes such as detoxification are incompletely understood. Previous studies revealed that the NNS sucralose (Sucr) altered P-glycoprotein (PGP) expression in rat colon. We also demonstrated that early-life exposure to NNS Sucr and acesulfame potassium (AceK) compromises mouse liver detoxification. Building upon these initial discoveries, we investigated the impact of AceK and Sucr on the PGP transporter in human cells to assess whether NNS influence its key role in cellular detoxification and drug metabolism. We showed that AceK and Sucr acted as PGP inhibitors, competing for the natural substrate-binding pocket of PGP. Most importantly, this was observed after exposure to concentrations of NNS within expected levels from common foods and beverage consumption. This may suggest risks for NNS consumers, either when taking medications that require PGP as the primary detoxification transporter or during exposure to toxic compounds.
非营养性甜味剂(NNS)是一种在食品、饮料和药物中常用的糖替代品。尽管监管机构认为 NNS 是安全的,但它们对解毒等生理过程的影响还不完全清楚。先前的研究表明,NNS 三氯蔗糖(Sucr)改变了大鼠结肠中的 P 糖蛋白(PGP)表达。我们还表明,早期暴露于 NNS 三氯蔗糖和安赛蜜(AceK)会损害小鼠肝脏的解毒功能。在此基础上,我们研究了 AceK 和 Sucr 对人细胞中 PGP 转运蛋白的影响,以评估 NNS 是否会影响其在细胞解毒和药物代谢中的关键作用。我们发现 AceK 和 Sucr 作为 PGP 抑制剂,与 PGP 的天然底物结合口袋竞争。最重要的是,这是在接触 NNS 浓度处于常见食物和饮料消费的预期水平内时观察到的。这可能对 NNS 消费者构成风险,无论是在服用需要 PGP 作为主要解毒转运体的药物时,还是在接触有毒化合物时。