Published March 1, 1986 | Version v1
Journal article

Extracts of human atherosclerotic lesions modify LDL inducing enhanced macrophage uptake

  • 1. Cleveland Clinic Foundation, OH

Description

Both an LDL-like fraction isolated from human aortic plaques and LDL incubated with cultured aortic endothelial or smooth muscle cells have been shown to be internalized by macrophages in vitro in an unregulated fashion leading to foam cell formation. Lipid peroxidation induced by free radicals released from cells was shown to be responsible for cell-modified LDL. The authors incubated LDL with a supernatant fraction of leached, i.e. non-homogenized, extracts of aortic plaques for one hour at 370C, to determine whether extracellular components present in arteries were also capable of modifying LDL. Extract-treated LDL showed the following changes relative to untreated LDL: 1) increased electrophretic mobility, 2) altered pattern of B-100 on SDS-PAGE, i.e. presence of a doublet with higher M/sub r/ than B-100, and 3) enhanced uptake by cultured mouse peritoneal macrophages as measured by increased degradation of 125I-LDL, and increased stimulation of cholesterol esterification using 14C-oleate. Extracts from homogenized plaques and grossly normal intima induced similar changes. The modification was tissue specific in that extracts of arteries but not of liver, muscle or skin modified LDL. Protease degradation of LDL during incubation was probably not responsible since inhibitors did not prevent modification. It is possible that products of lipid peroxidation present in extracellular lipid of arteries may propagate free radicals or be incorporated into LDL, leading to modifications similar to those found in cell-modified LDL

Additional details

Publishing Information

Journal Title
Fed. Proc., Fed. Am. Soc. Exp. Biol.
Journal Volume
45
Journal Issue
3
Series
Fed. Proc., Fed. Am. Soc. Exp. Biol.
Journal Page Range
347
ISSN
0014-9446
CODEN
FEPRA

Conference

Title
70. annual meeting of the Federation of American Society for Experimental Biology.
Dates
13-18 Apr 1986.
Place
St. Louis, MO (USA).

Optional Information

Secondary number(s)
CONF-8604222--.