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Chapter category: Signal Transduction

Ceramide in Serum Lipoproteins: Function and Regulation of Metabolism

This chapter appears in the following book:

Ceramide Signaling

Edited by: Anthony H. Futerman
ISBN: 0-306-47442-5
» Get more information about this book at landesbioscience.com «

Chapter authors:
Mariana N. Nikolova-Karakashian

Serum ceramide levels increase during the acute phase response to inflammation in animal models and in humans. Two major mechanisms appear to mediate these changes. The bacterial endotoxin, LPS, stimulates serine-palmitoyl transferase (SPT) mRNA levels and activity in liver, thus increasing de novo synthesis of ceramide. This is paralleled by an increase in ceramide levels in very low-density lipoproteins (VLDL) and low-density lipoproteins (LDL) fractions, but not in albumin and HDL fractions. Inflammatory mediators also stimulate the secretion of Zn2+-dependent sphingomyelinase (sSMase) by endothelial cells and macrophages, that acts on LDL particles trapped in the sub-endothelial space and hydrolyses LDL sphingomyelin (SM) to ceramide.

The resulting ceramide-enriched LDL have highly atherogenic properties. They are taken up by the endothelial cells in a receptor-mediated fashion and can deliver excess ceramide to the cells. This is paralleled by increased incidence of cell death. In turn, sSMase-treated lipoproteins undergo spontaneous aggregation, they are retained in the sub-endothelial space and induce foam cell formation in macrophages. In vivo data, using knockout mouse models, confirm further that LDL enriched in ceramide are an alternative route to increase intracellular ceramide levels and to affect the pro-atherogenic properties of LDL.

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Additional chapters from this book:

Ceramide in Serum Lipoproteins: Function and Regulation of Metabolism

Mariana N. Nikolova-Karakashian

Serum ceramide levels increase during the acute phase response to inflammation in animal models and in humans. Two major mechanisms appear to mediate these changes. The bacterial endotoxin, LP...

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The sphingolipid ceramide has recently been proposed as a new apoptotic cell death mediator. Here the role of the FAN (Factor Associated with Neutral sphingomyelinase activation) protein in ap...


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