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CGS 25159, a synthetic isoflavan CETP inhibitor, cuts VLDL+LDL cholesterol 28% and raises HDL cholesterol 29% in hamsters (Atherosclerosis 1997)

Original title: Inhibition of cholesterol ester transfer protein CGS 25159 and changes in lipoproteins in hamsters

Atherosclerosis · · 7

Kothari HV, Poirier KJ, Lee WH, Satoh Y

Isoflavans identified through screening as CETP antagonists were evaluated using CGS 25159, a synthetic isoflavan, as a candidate CETP inhibitor. CGS 25159 inhibited CETP-mediated cholesteryl ester transfer in both human and hamster plasma with an IC50 below 10 microM, and inhibited reciprocal triglyceride transfer with an IC50 of about 15 microM. Orally administered to normolipidemic hamsters (10 mg/kg for 4 days), CGS 25159 reduced plasma transfer activity by 35% to 60%. After 2 weeks of treatment, VLDL+LDL cholesterol, total triglycerides, and HDL cholesterol changed by -22 +/- 4.6%, -23 +/- 7.5%, and +10 +/- 2.8% at 10 mg/kg, and by -28 +/- 5.5%, -38 +/- 6.8%, and +29 +/- 4.4% at 30 mg/kg (n = 6). Density gradient ultracentrifugation showed increased HDL cholesterol and a shift to larger HDL particles.

Read the paper (DOI)PubMed

Original abstract

As a result of screening, several isoflavans were identified to be antagonists of cholesterol ester transfer protein (CETP) activity. The present study evaluates CGS 25159, a synthetic isoflavan, as a putative inhibitor of CETP activity of human and hamster plasma. Determined by [3]CE transfer from HDL to VLDL + LDL fraction or by fluorescent-CE transfer assay, CGS 25159 inhibited CETP in both human plasma bottom fraction (d = 1.21 g/ml) and in plasma from Golden Syrian Hamsters with an IC50 < 10 microM. The compound also inhibited (IC 50 approximately equal to 15 microM) the reciprocal transfer of triglycerides in the incubated whole plasma from normal and hyperlipidemic hamsters. When orally administered to normolipidemic hamsters, CGS 25159 (10 mg/kg, 4 days) reduced plasma transfer activity by 35-60%. Treatment with CGS 25159 (10 and 30 mg/kg, p.o.) resulted in dose dependent and time dependent changes in CETP activity. After two weeks of treatment at 10 mg/kg, the changes in VLDL + LDL cholesterol, total triglycerides and HDL cholesterol were -22 +/- 4.6*, -23 +/- 7.5 and +10 +/- 2.8%, respectively. The corresponding changes at 30 mg/kg were -28 +/- 5.5*, -38 +/- 6.8* and +29 +/-4.4.*%, (*, P, 0.05; mean +/- S.E.M., n = 6). A single spin gradient density ultracentrifugation of plasma lipoproteins and treated animals showed an increase in HDL cholesterol and a redistribution to larger HDL particles. These data support the contention that pharmacological down regulation of CETP activity could result in favorable changes in lipoprotein profile.

the classHDL biologypharmacology

Summary written by cetpinhibition.org from the published abstract; figures as published. Page updated 19 August 2026. Methods.