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February 1, 1993Arteriosclerosis and Thrombosis A Journal of Vascular Biology252 citations

Effect of hepatic lipase on LDL in normal men and those with coronary artery disease.

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AZAlberto ZambonMAMelissa A. AustinBBB. Greg Brown

Key Result

Hepatic lipase activity was inversely associated with LDL buoyancy and size, and correlated with free cholesterol content in both CAD patients and normolipidemic men.

Study Design

Type

Observational (n=44)

Structured PICO

Does hepatic lipase activity correlate with LDL buoyancy, size, and chemical composition in men with and without CAD?

P
Population
44 men, comprising 21 patients with coronary artery disease (CAD) and 23 normolipidemic subjects
O
Outcome
Association between hepatic triglyceride lipase (HL) activity and LDL buoyancy, size, and chemical compositionsurrogate

Hepatic lipase activity is inversely associated with LDL buoyancy and size, suggesting it plays a physiological role in modulating LDL physical and compositional properties.

Abstract

Hepatic triglyceride lipase (HL) is thought to play a role in the formation of low density lipoproteins (LDLs) from small very low density lipoproteins (VLDLs) and intermediate density lipoproteins (IDLs). To analyze the possible physiological role of HL in determining LDL buoyancy, size, and chemical composition, HL activity and LDL were studied in 21 patients with coronary artery disease (CAD) and 23 normolipidemic subjects. In both groups, LDL buoyancy and size were inversely associated with HL activity levels. The effect of HL on LDL size was comparable in CAD patients and in normolipidemic subjects. HL appeared to influence LDL lipid composition primarily by affecting the surface lipid components. The free cholesterol content of LDL particles was highly correlated with HL activity in both CAD and normolipidemic individuals. The free cholesterol to phospholipid ratio in LDL particles correlated with HL in both CAD and normolipidemic subjects. When the individuals were separated according to their LDL subclass patterns, pattern B subjects had significantly higher HL than pattern A subjects in both CAD and normolipidemic groups. The analysis of the cholesterol distribution profiles across the lipoprotein density gradient confirmed that LDL buoyancy is affected by HL. These data support the hypothesis that HL modulates the physical and compositional properties of LDL and contributes to the expression of the LDL subclass phenotype, suggesting a physiological role for HL in LDL metabolism.

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Cite This Study

Zambon et al. (1993) conducted an observational in Coronary artery disease (n=44). Hepatic triglyceride lipase (HL) activity was evaluated on LDL buoyancy, size, and chemical composition. Hepatic lipase activity was inversely associated with LDL buoyancy and size, and correlated with free cholesterol content in both CAD patients and normolipidemic men.

synapsesocial.com/papers/6a093376a419c5e264d2697chttps://doi.org/10.1161/01.atv.13.2.147
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Evaluation of the roles of lipoprotein lipase and hepatic lipase in lipoprotein metabolism: in vivo and in vitro studies in man1980 · 114 citations
  2. 2Identification of multiple subclasses of plasma low density lipoproteins in normal humans.1982 · 997 citations
  3. 3Inheritance of low density lipoprotein subclass patterns in familial combined hyperlipidemia.1990 · 263 citations
  4. 4Role of lipids and lipoprotein fractions in atherogenesis: The framingham study1981 · 68 citations
  5. 5Decreased plasma phosphatidylcholine/free cholesterol ratio as an indicator of risk for ischemic vascular disease.1982 · 80 citations