Mechanisms
CaCo-2 enterocytes secrete CETP (LTP-I) exclusively from their basolateral surface at twice the rate of HepG2 cells, and uniquely regulate secretion by fatty acid levels (J Biol Chem 1988)
Original title: Regulated vectorial secretion of cholesteryl ester transfer protein (LTP-I) by the CaCo-2 model of human enterocyte epithelium
The authors investigated the human CaCo-2 enterocyte model for secretion of plasma cholesteryl ester transfer protein, LTP-I. CaCo-2 cells secrete a cholesteryl ester transfer protein with molecular identity to plasma LTP-I, shown by anti-LTP-I immunoblot analysis and immunoinhibition of all cell-secreted transfer activity. When cultured on permeable membranes, CaCo-2 cells showed cholesteryl ester transfer activity only in the lower culture compartment, demonstrating vectorial sorting and secretion of LTP-I, like the intestinal apolipoproteins, from the basolateral domain. Over 24 hours, CaCo-2 cells secreted cholesteryl ester transfer activity at roughly twice the rate of HepG2 cells. Unlike HepG2 hepatocytes, CaCo-2 enterocytes regulated LTP-I secretion in response to fatty acid concentration in the culture medium.
Original abstract
We have investigated the human CaCo-2 enterocyte model for secretion of the plasma cholesteryl ester transfer protein, LTP-I. CaCo-2 cells secrete a cholesteryl ester transfer protein which possesses molecular identity with plasma LTP-I, demonstrated by anti-LTP-I immunoblot analysis and immunoinhibition of all cell-secreted cholesteryl ester transfer activity. When CaCo-2 are cultured on permeable membranes, cholesteryl ester transfer activity is detected only in the lower culture compartment. Thus, CaCo-2 vectorially sort and secrete LTP-I, as well as the intestinal apolipoproteins, from the basolateral cellular domain. Over a 24-h period, CaCo-2 secrete cholesteryl ester transfer activity in a time-dependent manner, at approximately twice the rate of HepG2. Furthermore, CaCo-2 enterocytes, but not HepG2 hepatocytes, regulate LTP-I secretion in response to fatty acid concentration in the culture medium. Based on these observations, we speculate that the intestine may be the principal regulated source of human plasma LTP-I.
Summary written by cetpinhibition.org from the published abstract; figures as published. Page updated 19 August 2026. Methods.