HDL biology
HIV/HAART patients show a blunted triglyceride-HDL cholesterol relationship driven by higher CETP mass but lower CETP-specific activity, not altered total CETP activity (Metabolism 2013)
Original title: Altered relationship of plasma triglycerides to HDL cholesterol in patients with HIV/HAART-associated dyslipidemia: further evidence for a unique form of metabolic syndrome in HIV patients
Comparing 179 hypertriglyceridemic HIV/HAART patients, 31 normotriglyceridemic (NL) HIV-negative persons, and 40 HIV-negative persons with type IV hyperlipidemia (HTG), plots of HDL cholesterol versus triglycerides showed similar slopes but significantly different y-intercepts across groups (9.24 +/- 0.45, 8.16 +/- 0.54, and 6.70 +/- 0.65 sqrt(HDL-C) for NL, HIV, and HTG; P < 0.001), a difference that persisted after adjustment for multiple covariates. In a subset of 19 NL and 87 HIV/HAART subjects, cholesteryl ester transfer protein (CETP) activity did not differ between groups, but CETP mass was significantly higher in HIV (1.47 +/- 0.53 versus 0.93 +/- 0.27 microg/mL, P < 0.0001), so CETP specific activity was lower in HIV (22.67 +/- 13.46 versus 28.46 +/- 8.24 nmol/microg/h, P = 0.001). The weak inverse HDL cholesterol-triglyceride relationship in HIV/HAART patients is not explained by altered total CETP activity.
Original abstract
Introduction: Plasma triglycerides (TG) and HDL-C are inversely related in Metabolic Syndrome (MetS), due to exchange of VLDL-TG for HDL-cholesteryl esters catalyzed by cholesteryl ester transfer protein (CETP). We investigated the relationship of TG to HDL-C in highly-active antiretroviral drug (HAART)-treated HIV patients.
Methods: Fasting plasma TG and HDL-C levels were compared in 179 hypertriglyceridemic HIV/HAART patients and 71 HIV-negative persons (31 normotriglyceridemic (NL) and 40 hypertriglyceridemic due to type IV hyperlipidemia (HTG)). CETP mass and activity were compared in 19 NL and 87 HIV/HAART subjects.
Results: Among the three groups, a plot of HDL-C vs. TG gave similar slopes but significantly different y-intercepts (9.24±0.45, 8.16±0.54, 6.70±0.65, sqrt(HDL-C) for NL, HIV and HTG respectively; P<0.001); this difference persisted after adjusting HDL-C for TG, age, BMI, gender, glucose, CD4 count, viral load and HAART strata (7.18±0.20, 6.20±0.05 and 4.55±0.15 sqrt(HDL-C) for NL, HIV and HTG, respectively, P<0.001). CETP activity was not different between NL and HIV, but CETP mass was significantly higher in HIV (1.47±0.53 compared to 0.93±0.27μg/mL, P<0.0001), hence CETP specific activity was lower in HIV (22.67±13.46 compared to 28.46±8.24nmol/μg/h, P=0.001).
Conclusions: Dyslipidemic HIV/HAART patients have a distinctive HDL-C plasma concentration adjusted for TG. The weak inverse relationship between HDL-C and TG is not explained by altered total CETP activity; it could result from a non-CETP-dependent mechanism or a decrease in CETP function due to inhibitors of CETP activity in HIV patients' plasma.
Summary written by cetpinhibition.org from the published abstract; figures as published. Page updated 19 August 2026. Methods.