Key result
Obesity is linked to ~12% less HDL without apoE or apoC-III and more CHD-associated subfractions.
Why the study?
The concentrations and distribution of HDL-apoA-I containing apoE, apoC-III, or both across HDL sizes and their association with obesity were unknown.
Does obesity alter the distribution of apolipoprotein E- and C-III-containing high density lipoprotein subfractions?
Observational (n=40)
Does obesity alter the distribution of apolipoprotein E- and C-III-containing high density lipoprotein subfractions?
Absolute Event Rate: 77% vs 89%
p-value: p=0.01
Obesity is associated with a higher prevalence of HDL subfractions containing apoE and apoC-III, which are linked to an increased risk of coronary heart disease.
May link obesity to CHD via HDL subfraction shifts; hypothesis-generating and requires prospective confirmation.
Human HDLs have highly heterogeneous composition. Plasma concentrations of HDL with apoC-III and of apoE in HDL predict higher incidence of coronary heart disease (CHD). The concentrations of HDL-apoA-I containing apoE, apoC-III, or both and their distribution across HDL sizes are unknown. We studied 20 normal weight and 20 obese subjects matched by age, gender, and race. Plasma HDL was separated by sequential immunoaffinity chromatography (anti-apoA-I, anti-apoC-III, anti-apoE), followed by nondenaturing-gel electrophoresis. Mean HDL-cholesterol concentrations in normal weight and obese subjects were 65 and 50 mg/dl (P = 0.009), and total apoA-I concentrations were 119 and 118 mg/dl, respectively. HDL without apoE or apoC-III was the most prevalent HDL type representing 89% of apoA-I concentration in normal weight and 77% in obese (P = 0.01) individuals; HDL with apoE-only was 5% versus 8% (P = 0.1); HDL with apoC-III-only was 4% versus 10% (P = 0.009); and HDL with apoE and apoC-III was 1.5% versus 4.6% (P = 0.004). Concentrations of apoE and apoC-III in HDL were 1.5-2× higher in obese subjects (P ≤ 0.004). HDL with apoE or apoC-III occurred in all sizes among groups. Obese subjects had higher prevalence of HDL containing apoE or apoC-III, subfractions associated with CHD, whereas normal weight subjects had higher prevalence of HDL without apoE or apoC-III, subfractions with protective association against CHD.
No takes yet. Share an insight, caveat, or question.
Talayero et al. (2014) conducted an observational in Obesity (n=40). Obesity vs. Normal weight was evaluated on Prevalence of HDL without apoE or apoC-III (percentage of apoA-I concentration) (p=0.01). Obesity was associated with a lower prevalence of HDL without apoE or apoC-III (77% vs 89%; P=0.01) and a higher prevalence of CHD-associated HDL subfractions containing apoE or apoC-III.
Synapse has enriched 4 closely related papers on similar clinical questions. Consider them for comparative context: