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Results: 1 to 20 of 106

Similar articles for PubMed (Select 18755805)

1.

Transcriptome response of enterocytes to dietary lipids: impact on cell architecture, signaling, and metabolism genes.

Béaslas O, Torreilles F, Casellas P, Simon D, Fabre G, Lacasa M, Delers F, Chambaz J, Rousset M, Carrière V.

Am J Physiol Gastrointest Liver Physiol. 2008 Nov;295(5):G942-52. doi: 10.1152/ajpgi.90237.2008. Epub 2008 Aug 28.

2.

Sensing of dietary lipids by enterocytes: a new role for SR-BI/CLA-1.

Béaslas O, Cueille C, Delers F, Chateau D, Chambaz J, Rousset M, Carrière V.

PLoS One. 2009;4(1):e4278. doi: 10.1371/journal.pone.0004278. Epub 2009 Jan 26.

3.

HNF-4-dependent induction of apolipoprotein A-IV gene transcription by an apical supply of lipid micelles in intestinal cells.

Carrière V, Vidal R, Lazou K, Lacasa M, Delers F, Ribeiro A, Rousset M, Chambaz J, Lacorte JM.

J Biol Chem. 2005 Feb 18;280(7):5406-13. Epub 2004 Dec 6.

4.

A complete epithelial organization of Caco-2 cells induces I-FABP and potentializes apolipoprotein gene expression.

Le Beyec J, Delers F, Jourdant F, Schreider C, Chambaz J, Cardot P, Pinçon-Raymond M.

Exp Cell Res. 1997 Oct 10;236(1):311-20.

PMID:
9344612
5.

Apple procyanidins decrease cholesterol esterification and lipoprotein secretion in Caco-2/TC7 enterocytes.

Vidal R, Hernandez-Vallejo S, Pauquai T, Texier O, Rousset M, Chambaz J, Demignot S, Lacorte JM.

J Lipid Res. 2005 Feb;46(2):258-68. Epub 2004 Dec 1.

6.

Lipid micelles stimulate the secretion of triglyceride-enriched apolipoprotein B48-containing lipoproteins by Caco-2 cells.

Chateau D, Pauquai T, Delers F, Rousset M, Chambaz J, Demignot S.

J Cell Physiol. 2005 Mar;202(3):767-76.

PMID:
15389567
7.

The proteome of cytosolic lipid droplets isolated from differentiated Caco-2/TC7 enterocytes reveals cell-specific characteristics.

Bouchoux J, Beilstein F, Pauquai T, Guerrera IC, Chateau D, Ly N, Alqub M, Klein C, Chambaz J, Rousset M, Lacorte JM, Morel E, Demignot S.

Biol Cell. 2011 Nov;103(11):499-517. doi: 10.1042/BC20110024.

8.
9.

Transcriptome variations in human CaCo-2 cells: a model for enterocyte differentiation and its link to iron absorption.

Bédrine-Ferran H, Le Meur N, Gicquel I, Le Cunff M, Soriano N, Guisle I, Mottier S, Monnier A, Teusan R, Fergelot P, Le Gall JY, Léger J, Mosser J.

Genomics. 2004 May;83(5):772-89.

PMID:
15081108
10.

Lipid-dependent bidirectional traffic of apolipoprotein B in polarized enterocytes.

Morel E, Demignot S, Chateau D, Chambaz J, Rousset M, Delers F.

Mol Biol Cell. 2004 Jan;15(1):132-41. Epub 2003 Oct 17.

11.

Gene expression analysis of a human enterocyte cell line reveals downregulation of cholesterol biosynthesis in response to short-chain fatty acids.

Alvaro A, Solà R, Rosales R, Ribalta J, Anguera A, Masana L, Vallvé JC.

IUBMB Life. 2008 Nov;60(11):757-64. doi: 10.1002/iub.110. Review.

PMID:
18642346
12.

Absorption properties of micellar lipid metabolites into Caco2 cells.

Tsuzuki W.

Lipids. 2007 Jul;42(7):613-9. Epub 2007 Jun 21.

PMID:
17582542
13.

Sugar sensing by enterocytes combines polarity, membrane bound detectors and sugar metabolism.

Le Gall M, Tobin V, Stolarczyk E, Dalet V, Leturque A, Brot-Laroche E.

J Cell Physiol. 2007 Dec;213(3):834-43.

PMID:
17786952
14.

High-throughput functional genomic methods to analyze the effects of dietary lipids.

Puskás LG, Ménesi D, Fehér LZ, Kitajka K.

Curr Pharm Biotechnol. 2006 Dec;7(6):525-9. Review.

PMID:
17168668
15.

Short-term adaptation of postprandial lipoprotein secretion and intestinal gene expression to a high-fat diet.

Hernández Vallejo SJ, Alqub M, Luquet S, Cruciani-Guglielmacci C, Delerive P, Lobaccaro JM, Kalopissis AD, Chambaz J, Rousset M, Lacorte JM.

Am J Physiol Gastrointest Liver Physiol. 2009 Apr;296(4):G782-92. doi: 10.1152/ajpgi.90324.2008. Epub 2009 Feb 5.

16.

Functional characterization of three clones of the human intestinal Caco-2 cell line for dietary lipid processing.

Salvini S, Charbonnier M, Defoort C, Alquier C, Lairon D.

Br J Nutr. 2002 Mar;87(3):211-7.

PMID:
12064329
17.

Differential association of adipophilin and TIP47 proteins with cytoplasmic lipid droplets in mouse enterocytes during dietary fat absorption.

Lee B, Zhu J, Wolins NE, Cheng JX, Buhman KK.

Biochim Biophys Acta. 2009 Dec;1791(12):1173-80. doi: 10.1016/j.bbalip.2009.08.002. Epub 2009 Aug 20.

PMID:
19698802
18.

D-Serine exposure resulted in gene expression changes implicated in neurodegenerative disorders and neuronal dysfunction in male Fischer 344 rats.

Davidson ME, Kerepesi LA, Soto A, Chan VT.

Arch Toxicol. 2009 Aug;83(8):747-62. doi: 10.1007/s00204-009-0405-3. Epub 2009 Feb 11.

PMID:
19212759
19.

Dietary lipid levels have a remarkable impact on the expression of growth-related genes in Senegalese sole (Solea senegalensis Kaup).

Campos C, Valente LM, Borges P, Bizuayehu T, Fernandes JM.

J Exp Biol. 2010 Jan 15;213(2):200-9. doi: 10.1242/jeb.033126.

20.

Differences in cell morphology, lipid and apo B secretory capacity in caco-2 cells following long term treatment with saturated and monounsaturated fatty acids.

Bateman PA, Jackson KG, Maitin V, Yaqoob P, Williams CM.

Biochim Biophys Acta. 2007 Apr;1771(4):475-85. Epub 2007 Feb 12.

PMID:
17347032
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