Literature DB >> 11792719

Induction of monocyte differentiation and foam cell formation in vitro by 7-ketocholesterol.

John M Hayden1, Libuse Brachova, Karen Higgins, Lewis Obermiller, Alex Sevanian, Srikrishna Khandrika, Peter D Reaven.   

Abstract

Oxidized LDL (OxLDL) is composed of many potentially proatherogenic molecules, including oxysterols. Of the oxysterols, 7-ketocholesterol (7-KC) is found in relatively large abundance in OxLDL, as well as in atherosclerotic plaque and foam cells in vivo. Although there is evidence that 7-KC activates endothelial cells, its effect on monocytes is unknown. We tested the hypothesis that 7-KC may induce monocyte differentiation and promote foam cell formation. THP-1 cells were used as a monocyte model system and were treated with 7-KC over a range of concentrations from 0.5 to 10 microg/ml. Changes in cell adhesion properties, cell morphology, and expression of antigens characteristic of differentiated macrophages were monitored over a 7-day period. 7-KC promoted cells to firmly adhere and display morphologic features of differentiated macrophages; this effect was time and dose dependent and was markedly more potent than cholesterol treatment (45% of cells became adherent after 7 days of treatment with 7-KC at 10 microg/ml vs. less then 5% for control cells, P < 0.01). Similar effects were obtained when LDL enriched with 7-KC or OxLDL were added to THP-1 cells. 7-KC-differentiated cells expressed CD11b, CD36, and CD68, phagocytized latex beads, and formed lipid-laden foam cells after exposure to acetylated LDL or OxLDL. In contrast to 7-KC, oxysterols with known cell regulatory effects such as 25-hydroxycholesterol, 7beta-hydroxycholesterol, and (22R)-hydroxycholesterol did not effectively promote THP-1 differentiation. In conclusion, these results demonstrate for the first time that 7-KC, a prominent oxysterol formed in OxLDL by peroxidation of cholesterol, may play an important role in promoting monocyte differentiation and foam cell formation. These studies also suggest that 7-KC induces monocyte differentiation through a sterol-mediated regulatory pathway that remains to be characterized.

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Year:  2002        PMID: 11792719

Source DB:  PubMed          Journal:  J Lipid Res        ISSN: 0022-2275            Impact factor:   5.922


  29 in total

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3.  Influence of oxidatively modified LDL on monocyte-macrophage differentiation.

Authors:  Achuthan Radhika; Shiney S Jacob; Perumana R Sudhakaran
Journal:  Mol Cell Biochem       Date:  2007-07-28       Impact factor: 3.396

4.  IL-12 could induce monocytic tumor cells directional differentiation.

Authors:  Ting-Ting Ma; Bi-Tao Wu; Yan Lin; Hai-Yu Xiong; Qin Wang; Zi-Wei Li; Feng Cheng; Zhi-Guang Tu
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5.  AMP-activated protein kinase α1 promotes atherogenesis by increasing monocyte-to-macrophage differentiation.

Authors:  Miao Zhang; Huaiping Zhu; Ye Ding; Zhaoyu Liu; Zhejun Cai; Ming-Hui Zou
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6.  Oxysterol-induced toxicity in R28 and ARPE-19 cells.

Authors:  John M Ong; Annette M Aoki; Gail M Seigel; Ingrid Sacerio; Raquel Castellon; Anthony B Nesburn; M Cristina Kenney
Journal:  Neurochem Res       Date:  2003-06       Impact factor: 3.996

7.  Inflammasomes Induced by 7-Ketocholesterol and Other Stimuli in RPE and in Bone Marrow-Derived Cells Differ Markedly in Their Production of IL-1β and IL-18.

Authors:  Guangpu Shi; Siqi Chen; Wambui S Wandu; Osato Ogbeifun; Lindsey F Nugent; Arvydas Maminishkis; Samuel J H Hinshaw; Ignacio R Rodriguez; Igal Gery
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Review 8.  Effects of dyslipidaemia on monocyte production and function in cardiovascular disease.

Authors:  Mohammed Shamim Rahman; Andrew J Murphy; Kevin J Woollard
Journal:  Nat Rev Cardiol       Date:  2017-03-16       Impact factor: 32.419

9.  The two variants of oxysterol binding protein-related protein-1 display different tissue expression patterns, have different intracellular localization, and are functionally distinct.

Authors:  Marie Johansson; Virginie Bocher; Markku Lehto; Giulia Chinetti; Esa Kuismanen; Christian Ehnholm; Bart Staels; Vesa M Olkkonen
Journal:  Mol Biol Cell       Date:  2003-03       Impact factor: 4.138

10.  Maternal hypercholesterolemia enhances oxysterol concentration in mothers and newly weaned offspring but is attenuated by maternal phytosterol supplementation.

Authors:  Jerad H Dumolt; Sandhya K Radhakrishnan; Mohammed H Moghadasian; Khuong Le; Mulchand S Patel; Richard W Browne; Todd C Rideout
Journal:  J Nutr Biochem       Date:  2017-09-28       Impact factor: 6.048

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