Mechanisms
Saccharin-fed zebrafish show elevated CETP activity while aspartame-fed zebrafish suffer acute deaths under high-cholesterol diet (Food Chem Toxicol 2011)
Original title: Aspartame-fed zebrafish exhibit acute deaths with swimming defects and saccharin-fed zebrafish have elevation of cholesteryl ester transfer protein activity in hypercholesterolemia
Researchers fed zebrafish aspartame or saccharin alongside a high-cholesterol diet (HCD) to test how artificial sweeteners affect physiology under hyperlipidemia. After 12 days, 30% of aspartame-fed, HCD-fed zebrafish died with swimming defects (65% survival versus 100% in control and saccharin groups), and the aspartame group showed a marked rise in serum glucose (up to 125 mg/dL, 58% greater than HCD alone). The saccharin-and-HCD group had the highest serum cholesterol (599 mg/dL) and the highest cholesteryl ester transfer protein (CETP) activity (52% CE-transfer) compared with 42% CE-transfer in the HCD-alone group. Histology showed more brain and liver inflammatory infiltration in the aspartame-and-HCD group. The authors conclude that under hyperlipidemia, aspartame caused acute neurologic toxicity while saccharin worsened the atherogenic lipid profile via elevated CETP activity.
Original abstract
Although many artificial sweeteners (AS) have safety issues, the AS have been widely used in industry. To determine the physiologic effect of AS in the presence of hyperlipidemia, zebrafish were fed aspartame or saccharin with a high-cholesterol diet (HCD). After 12 days, 30% of zebrafish, which consumed aspartame and HCD, died with exhibiting swimming defects. The aspartame group had 65% survivability, while the control and saccharin groups had 100% survivability. Under HCD, the saccharin-fed groups had the highest increase in the serum cholesterol level (599 mg/dL). Aspartame-fed group showed a remarkable increase in serum glucose (up to 125 mg/dL), which was 58% greater than the increase in the HCD alone group. The saccharin and HCD groups had the highest cholesteryl ester transfer protein (CETP) activity (52% CE-transfer), while the HCD alone group had 42% CE-transfer. Histologic analysis revealed that the aspartame and HCD groups showed more infiltration of inflammatory cells in the brain and liver sections. Conclusively, under presence of hyperlipidemia, aspartame-fed zebrafish exhibited acute swimming defects with an increase in brain inflammation. Saccharin-fed zebrafish had an increased atherogenic serum lipid profile with elevation of CETP activity.
Summary written by cetpinhibition.org from the published abstract; figures as published. Page updated 18 August 2026. Methods.