Investigation of the Assembly of Chylomicrons in Hamster Enterocytes Using Pluronic-L81 Acid as a Probe

A major function of the enterocytes is absorption, processing, and export of dietary lipids into the lymphatic system. Pluronic L-81 is a non-ionic hydrophobic surfactant, which specifically inhibits lipid absorption in the intestine when administered in vivo. This compound is therefore an attractiv...

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Main Authors: Mahnaz Mardani, Sadegh Rezapour, Joan A. Higgins
Format: Article
Language:English
Published: Tehran University of Medical Sciences 2011-06-01
Series:Acta Medica Iranica
Subjects:
Online Access:http://journals.tums.ac.ir/upload_files/pdf/18917.pdf
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author Mahnaz Mardani
Sadegh Rezapour
Joan A. Higgins
author_facet Mahnaz Mardani
Sadegh Rezapour
Joan A. Higgins
author_sort Mahnaz Mardani
collection DOAJ
description A major function of the enterocytes is absorption, processing, and export of dietary lipids into the lymphatic system. Pluronic L-81 is a non-ionic hydrophobic surfactant, which specifically inhibits lipid absorption in the intestine when administered in vivo. This compound is therefore an attractive probe to perturb and investigate the molecular and intracellular events in chylomicron assembly in the enterocytes. In the present study pluronic acid was administered to hamsters followed by isolation of the enterocytes and cell fractionation to investigate the effect of pluronic acid on intracellular events in lipid absorption. Four types of diet were administered to hamsters for three weeks; low-fat chow, high-fat chow and each diet with or without added pluronic acid. Sub-cellular fractions of freshly isolated enterocytes were prepared. Consistent with morphological observation, the high fat diet resulted in a three-fold increase in the triacylglycerol (TAG) content of the enterocytes and addition of pluronic acid to either the low fat or the high fat diets resulted in a ten-fold increase in cellular TAG levels. Determination of the mass of TAG and the time course of incorporation of 3H-triolein, administered by gavage, showed that the increased TAG was recovered in the microsomal (endoplasmic reticulum) fraction and the cytosol. In microsomes, increased TAG was recovered mainly in the membrane although there was a significant amount in the microsomal luminal contents. Pluronic acid therefore acts at the level of the endoplasmic reticulum and inhibits the assembly of apo-B48 with chylomicron TAG. The excess TAG is transferred to cytosolic stores.
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spelling doaj.art-be2fc126132d4090bc2615938d2eb4162022-12-22T03:11:24ZengTehran University of Medical SciencesActa Medica Iranica0044-60252011-06-01496341351Investigation of the Assembly of Chylomicrons in Hamster Enterocytes Using Pluronic-L81 Acid as a ProbeMahnaz MardaniSadegh RezapourJoan A. HigginsA major function of the enterocytes is absorption, processing, and export of dietary lipids into the lymphatic system. Pluronic L-81 is a non-ionic hydrophobic surfactant, which specifically inhibits lipid absorption in the intestine when administered in vivo. This compound is therefore an attractive probe to perturb and investigate the molecular and intracellular events in chylomicron assembly in the enterocytes. In the present study pluronic acid was administered to hamsters followed by isolation of the enterocytes and cell fractionation to investigate the effect of pluronic acid on intracellular events in lipid absorption. Four types of diet were administered to hamsters for three weeks; low-fat chow, high-fat chow and each diet with or without added pluronic acid. Sub-cellular fractions of freshly isolated enterocytes were prepared. Consistent with morphological observation, the high fat diet resulted in a three-fold increase in the triacylglycerol (TAG) content of the enterocytes and addition of pluronic acid to either the low fat or the high fat diets resulted in a ten-fold increase in cellular TAG levels. Determination of the mass of TAG and the time course of incorporation of 3H-triolein, administered by gavage, showed that the increased TAG was recovered in the microsomal (endoplasmic reticulum) fraction and the cytosol. In microsomes, increased TAG was recovered mainly in the membrane although there was a significant amount in the microsomal luminal contents. Pluronic acid therefore acts at the level of the endoplasmic reticulum and inhibits the assembly of apo-B48 with chylomicron TAG. The excess TAG is transferred to cytosolic stores.http://journals.tums.ac.ir/upload_files/pdf/18917.pdfIsolated EnterocytesPluronic AcidApolipoprotein B48Hamster
spellingShingle Mahnaz Mardani
Sadegh Rezapour
Joan A. Higgins
Investigation of the Assembly of Chylomicrons in Hamster Enterocytes Using Pluronic-L81 Acid as a Probe
Acta Medica Iranica
Isolated Enterocytes
Pluronic Acid
Apolipoprotein B48
Hamster
title Investigation of the Assembly of Chylomicrons in Hamster Enterocytes Using Pluronic-L81 Acid as a Probe
title_full Investigation of the Assembly of Chylomicrons in Hamster Enterocytes Using Pluronic-L81 Acid as a Probe
title_fullStr Investigation of the Assembly of Chylomicrons in Hamster Enterocytes Using Pluronic-L81 Acid as a Probe
title_full_unstemmed Investigation of the Assembly of Chylomicrons in Hamster Enterocytes Using Pluronic-L81 Acid as a Probe
title_short Investigation of the Assembly of Chylomicrons in Hamster Enterocytes Using Pluronic-L81 Acid as a Probe
title_sort investigation of the assembly of chylomicrons in hamster enterocytes using pluronic l81 acid as a probe
topic Isolated Enterocytes
Pluronic Acid
Apolipoprotein B48
Hamster
url http://journals.tums.ac.ir/upload_files/pdf/18917.pdf
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AT sadeghrezapour investigationoftheassemblyofchylomicronsinhamsterenterocytesusingpluronicl81acidasaprobe
AT joanahiggins investigationoftheassemblyofchylomicronsinhamsterenterocytesusingpluronicl81acidasaprobe