Related Experiment Video
Updated: Jan 22, 2026

Single-Cell Suspension Preparation from Nile Tilapia Intestine for Single-Cell Sequencing
Published on: February 10, 2023
Inhibited autophagy impairs systemic nutrient metabolism in Nile tilapia
Si-Lan Han1, Jing Wang1, Yu-Xue Zhang1
1LANEH, School of Life Sciences, East China Normal University, Shanghai, China.
Abstract:
Autophagy is a conserved cellular degradation process through which intracellular components are degraded by the lysosome, but its roles in fish metabolism have not been studied in depth. Therefore, the present study aimed to investigate whether autophagy plays a key role in maintaining metabolic homeostasis in fish. In an 8-week feeding trial, Nile tilapia were fed either a control diet with medium fat and medium carbohydrate (Control), or a control diet supplemented with a classic autophagy inhibitor (chloroquine, CQ). CQ supplementation significantly inhibited autophagy and impaired fish growth and protein synthesis, and the glycolysis was stimulated, accompanied by fat accumulation, high oxidative stress and inflammation. Physiological status and gene expressions suggested that impaired autophagy might be at least one cause of the metabolic diseases which has been commonly seen in aquaculture. These results indicate that inhibition of autophagy could significantly affect the metabolism of lipid, carbohydrate and protein in fish; hence, autophagy could play important roles in maintaining homeostasis of nutrient metabolism in cultured fish.
Related Concept Videos
Feedback Inhibition
Autophagy
An autophagic pathway consists of a series of signaling events activated in response to diverse stress and physiological conditions such as food deprivation,...
Absorption of Nutrients
Enterocytes, which are specialized polar epithelial cells, line the mucosa of the small intestinal walls. These cells...
What is Metabolism?
Enzyme Inhibition
Second Order systems II

