• Title of article

    An excess concentration of oxysterols in the plasma is cytotoxic to cultured endothelial cells

  • Author/Authors

    Qi Zhou، نويسنده , , Erwin Wasowicz، نويسنده , , Bruce Handler، نويسنده , , Leslie Fleischer، نويسنده , , Fred A. Kummerow، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2000
  • Pages
    7
  • From page
    191
  • To page
    197
  • Abstract
    To test if there is an excess concentration of oxysterols in the plasma of the patients with cardiovascular disease, we analyzed the oxysterol content in the plasma from 105 cardiac catheterized patients with angina and 80±8% stenosis in their coronary arteries. The result showed that the plasma contained a significantly higher concentration of oxysterols than did plasma from 105 age- and sex-matched, non-catheterized and angina-free controls (P<0.05). We used endothelial cells (ECs) cultured in medium containing either [3H]thymidine, [3H]mevalonolactone or 45Ca2+ to determine how the plasma from the patients influences cell growth and function. We found that less [3H]thymidine (P<0.05), less [3H]mevalonolactone (P<0.05) and more 45Ca2+ (P<0.001) was incorporated into ECs cultured in the plasma from 36 patients with 83±4% stenosis than from the 36 controls. When synthetic 7β-hydroxycholesterol, cholesterol 5β,6β-epoxide, cholesterol 5α,6α-epoxide and 7-ketocholesterol were added to the plasma from the controls, the influx of 45Ca2+ into ECs then equaled that in the plasma of patients. The enhanced incorporation of 45Ca2+ into the ECs cultured in the plasma both from the patients and from controls with added synthetic oxysterols substantiates in vitro the hypothesis that oxysterols increase the influx of calcium into cells. These data indicated that an excess of oxysterols in the plasma of the patients was cytotoxic to the cultured cells.
  • Keywords
    Ca2 influx , cytotoxicity , Cultured human endothelial cells , Cholesterol synthesis , Stenosis , Thymidineincorporation , oxysterols , atherosclerosis
  • Journal title
    Atherosclerosis
  • Serial Year
    2000
  • Journal title
    Atherosclerosis
  • Record number

    629842