Related Experiment Video
Updated: May 16, 2026

The Isolation of Flowing Mesenteric Lymph in Mice to Quantify In Vivo Kinetics of Dietary Lipid Absorption and Chylomicron Secretion
Published on: November 30, 2022
Caspase-1 deficiency in mice reduces intestinal triglyceride absorption and hepatic triglyceride secretion
Janna A van Diepen1, Rinke Stienstra, Irene O C M Vroegrijk
1Department of General Internal Medicine, Endocrinology and Metabolic Diseases, Leiden University Medical Center, Leiden, The Netherlands.
Abstract:
Caspase-1 is known to activate the proinflammatory cytokines IL-1β and IL-18. Additionally, it can cleave other substrates, including proteins involved in metabolism. Recently, we showed that caspase-1 deficiency in mice strongly reduces high-fat diet-induced weight gain, at least partly caused by an increased energy production. Increased feces secretion by caspase-1-deficient mice suggests that lipid malabsorption possibly further reduces adipose tissue mass. In this study we investigated whether caspase-1 plays a role in triglyceride-(TG)-rich lipoprotein metabolism using caspase-1-deficient and wild-type mice. Caspase-1 deficiency reduced the postprandial TG response to an oral lipid load, whereas TG-derived fatty acid (FA) uptake by peripheral tissues was not affected, demonstrated by unaltered kinetics of [(3)H]TG-labeled very low-density lipoprotein (VLDL)-like emulsion particles. An oral gavage of [(3)H]TG-containing olive oil revealed that caspase-1 deficiency reduced TG absorption and subsequent uptake of TG-derived FA in liver, muscle, and adipose tissue. Similarly, despite an elevated hepatic TG content, caspase-1 deficiency reduced hepatic VLDL-TG production. Intestinal and hepatic gene expression analysis revealed that caspase-1 deficiency did not affect FA oxidation or FA uptake but rather reduced intracellular FA transport, thereby limiting lipid availability for the assembly and secretion of TG-rich lipoproteins. The current study reveals a novel function for caspase-1, or caspase-1-cleaved substrates, in controlling intestinal TG absorption and hepatic TG secretion.
Insights
Caspase-1 deficiency impairs triglyceride absorption and hepatic secretion of triglyceride-rich lipoproteins. This suggests a novel role for caspase-1 in regulating lipid metabolism and lipoprotein assembly.
Area of Science:
- Metabolic research
- Lipid metabolism
- Inflammation research
Background:
- Caspase-1 activates pro-inflammatory cytokines IL-1β and IL-18.
- Caspase-1 deficiency reduces high-fat diet-induced weight gain and increases energy production.
- Caspase-1 deficiency increases fecal lipid excretion, suggesting impaired lipid absorption.
Purpose of the Study:
- Investigate the role of caspase-1 in triglyceride-rich lipoprotein metabolism.
- Determine how caspase-1 deficiency affects lipid absorption and lipoprotein secretion.
Main Methods:
- Utilized caspase-1-deficient and wild-type mice.
- Administered oral lipid loads and radiolabeled triglyceride-rich lipoproteins.
- Analyzed triglyceride absorption, fatty acid uptake, and gene expression in intestinal and hepatic tissues.
Main Results:
- Caspase-1 deficiency reduced postprandial triglyceride response to oral lipid load.
- Impaired intestinal triglyceride absorption and fatty acid uptake in liver, muscle, and adipose tissue.
- Reduced hepatic very low-density lipoprotein-triglyceride production despite elevated hepatic triglyceride content.
- Decreased intracellular fatty acid transport, limiting lipid availability for lipoprotein assembly and secretion.
Conclusions:
- Caspase-1 plays a novel role in regulating intestinal triglyceride absorption.
- Caspase-1 influences hepatic secretion of triglyceride-rich lipoproteins.
- Caspase-1 deficiency impacts intracellular fatty acid transport, affecting lipid metabolism.
More Related Videos
09:44Evaluating Therapeutic Interventions in the SHIP-deficient Mouse Model of Crohn Disease-like Ileitis and Fibrosis
Published on: October 14, 2025
10:12A Fluorescence-based Assay for Characterization and Quantification of Lipid Droplet Formation in Human Intestinal Organoids
Published on: October 13, 2019
Related Concept Videos
Caspases
Lipid Absorption
These breakdown products bind with bile salts and lecithin to form micelles, which quickly pass between microvilli to come in close contact with the apical...