The class
Novel benzylaminopropionanilide CETP inhibitors raise HDL and lower LDL in hamsters (Bioorg Med Chem 2016)
Original title: Discovery of novel N,N-3-phenyl-3-benzylaminopropionanilides as potent inhibitors of cholesteryl ester transfer protein in vivo
Starting from lead compound L10 (IC50 8.06 micromolar), found by pharmacophore-based virtual screening, researchers optimised a series of N,N-3-phenyl-3-benzylaminopropionanilide derivatives as CETP inhibitors, building on a related benzylaminopropanamide series reported previously that reached an IC50 of 0.69 micromolar. Systematic structure-activity relationship work on the anilide series yielded H16, with an in vitro IC50 of 0.15 micromolar in a BODIPY-CE fluorescence CETP assay. In hamsters, H16 produced both favourable HDL cholesterol enhancement and LDL cholesterol reduction in vivo, and the compound showed excellent stability in rat liver microsomes, supporting it as a potent CETP inhibitor lead.
Original abstract
Epidemiological studies have identified that the risk of cardiovascular events increases due to the decreased levels of high density lipoprotein-cholesterol and the elevated levels of low density lipoprotein-cholesterol. Herein, we report a novel series of N,N-3-phenyl-3-benzylaminopropionanilide derivatives, which were identified as potent cholesteryl ester transfer protein (CETP) inhibitor. The initial lead compound L10 (IC50 8.06 μM) was found by pharmacophore-based virtual screening (Dong-Mei Zhao et al., Chin. Chem. Lett.2014, 25, 299). After systematic structure variation and biological testing against CETP, two different series were identified as scaffolds for potent CETP inhibitors. One is N,N-3-phenyl-3-benzylaminopropanamide derivatives, which were investigated in our previous paper (Bioorg. Med. Chem.2015, doi: http://dx.doi.org/10.1016/j.bmc.2015.12.010). The most potent compound HL16 in that series has the IC50 of 0.69 μM. The other series is N,N-3-phenyl-3-benzylaminopropionanilide derivatives, which was investigated in current study. Further optimization of the structure-activity relationship (SAR) resulted in H16 (IC50 0.15 μM), which was discovered as a potent CETP inhibitor in vitro by BODIPY-CE fluorescence assay. In addition, the results of pharmacodynamics studies showed that H16 exhibited both favorable HDL-C enhancement and LDL-C reduction in vivo by hamster. It also has an excellent stability in rat liver microsomal.
the classmechanismspharmacology
Summary written by cetpinhibition.org from the published abstract; figures as published. Page updated 19 August 2026. Methods.