HDL biology
Plasma CETP mass and PLTP activity, but not adiponectin or resistin, are independently linked to leptin levels in type 2 diabetes (Biochim Biophys Acta 2007)
Original title: Plasma cholesteryl ester transfer protein mass and phospholipid transfer protein activity are associated with leptin in type 2 diabetes mellitus
In 83 type 2 diabetic patients (32 women) and 83 sex-matched controls, plasma phospholipid transfer protein (PLTP) activity, cholesteryl ester transfer (CET), leptin, resistin, high-sensitivity C-reactive protein, and insulin resistance (HOMA-ir) were all significantly higher (P <= 0.005 for all), while HDL cholesterol and adiponectin were lower (P < 0.001 for both), in diabetic patients than controls. Multiple linear regression showed that in diabetic patients, plasma leptin was related to plasma cholesteryl ester transfer protein (CETP) mass (P = 0.018) and PLTP activity (P < 0.001), but not to resistin or adiponectin. Plasma CET correlated inversely with adiponectin in univariate analysis, but this association disappeared after adjusting for plasma lipids and CETP. Both plasma CETP mass and PLTP activity are therefore associated with plasma leptin in type 2 diabetes.
Original abstract
Adipose tissue contributes to plasma levels of lipid transfer proteins and is also the major source of plasma adipokines. We hypothesized that plasma cholesteryl ester transfer protein (CETP) mass, phospholipid transfer protein (PLTP) activity and cholesteryl ester transfer (CET, a measure of CETP action) are determined by adipokine levels. In this study, relationships of plasma CETP mass, PLTP activity and CET with leptin, resistin and adiponectin were analyzed in type 2 diabetic patients and control subjects. Plasma PLTP activity (P<0.001), CET (P<0.001), leptin (P=0.003), resistin (P<0.001), high sensitive C-reactive protein (P=0.005), and insulin resistance (HOMA(ir)) (P<0.001) were higher, whereas HDL cholesterol (P<0.001) and plasma adiponectin (P<0.001) were lower in 83 type 2 diabetic patients (32 females) than in 83 sex-matched control subjects. Multiple linear regression analysis demonstrated that in diabetic patients plasma leptin levels were related to plasma CETP mass (P=0.018) and PLTP activity (P<0.001), but not to the other adipokines measured. Plasma CET was inversely correlated with adiponectin in univariate analysis, but this association disappeared in multivariate models that included plasma lipids and CETP. In conclusion, both plasma CETP mass and PLTP activity are associated with plasma leptin in type 2 diabetes. The elevated CET in these patients is not independently related to any of the measured plasma adipokines.
Summary written by cetpinhibition.org from the published abstract; figures as published. Page updated 19 August 2026. Methods.