Literature DB >> 3994584

Postheparin plasma triglyceride lipases. Relationships with very low density lipoprotein triglyceride and high density lipoprotein2 cholesterol.

D Applebaum-Bowden, S M Haffner, P W Wahl, J J Hoover, G R Warnick, J J Albers, W R Hazzard.   

Abstract

Hepatic triglyceride (HTGL) and lipoprotein lipase (LPL) probably have major roles in the removal of triglyceride from triglyceride-rich lipoprotein and in the formation of high density lipoprotein (HDL). However, no population-based study of their activity and relationship to lipoprotein lipid levels has been reported. To determine these relationships, we recalled 33 men and 17 women of a randomly selected sample of the Lipid Research Clinics Pacific Northwest Bell Telephone Company Health Survey. The subjects were 53 +/- 7 years old (mean +/- SD) with total triglyceride levels of 120 +/- 57 mg/dl and total cholesterol levels of 224 +/- 35 mg/dl. Postheparin plasma LPL activity (127 +/- 61 nmol/min/ml) was not significantly correlated with either age, sex, or adiposity. In contrast, HTGL activity was significantly higher in men (235 +/- 84 nmol/min/ml) than women (170 +/- 91 nmol/min/ml, p less than 0.02), and was correlated with age in men and with adiposity in women. In both men and women, HTGL activity was related positively with VLDL triglyceride and inversely with HDL2 cholesterol. When the association between HTGL activity and VLDL triglyceride was examined with values from men and women pooled, the relationship was not weakened after adjustment for the linear effect of sex, adiposity, LPL, or HDL2 cholesterol.

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Year:  1985        PMID: 3994584     DOI: 10.1161/01.atv.5.3.273

Source DB:  PubMed          Journal:  Arteriosclerosis        ISSN: 0276-5047


  10 in total

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Authors:  M A Moussa; A A Shaltout; D Nkansa-Dwamena; M Mourad; N Alsheikh; N Agha; D O Galal
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3.  DNA polymorphism haplotypes of the human lipoprotein lipase gene: possible association with high density lipoprotein levels.

Authors:  C Heizmann; T Kirchgessner; P O Kwiterovich; J A Ladias; C Derby; S E Antonarakis; A J Lusis
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4.  The role of insulin in clustering of serum lipids and blood pressure in children and adolescents. The Cardiovascular Risk in Young Finns Study.

Authors:  O T Raitakari; K V Porkka; T Rönnemaa; M Knip; M Uhari; H K Akerblom; J S Viikari
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5.  Elevated high density lipoprotein cholesterol levels correlate with decreased apolipoprotein A-I and A-II fractional catabolic rate in women.

Authors:  E A Brinton; S Eisenberg; J L Breslow
Journal:  J Clin Invest       Date:  1989-07       Impact factor: 14.808

6.  A hepatic lipase (LIPC) allele associated with high plasma concentrations of high density lipoprotein cholesterol.

Authors:  R Guerra; J Wang; S M Grundy; J C Cohen
Journal:  Proc Natl Acad Sci U S A       Date:  1997-04-29       Impact factor: 11.205

7.  Bone marrow-derived HL mitigates bone marrow-derived CETP-mediated decreases in HDL in mice globally deficient in HL and the LDLr.

Authors:  Neil J Hime; Audrey S Black; David J Bonnet; Linda K Curtiss
Journal:  J Lipid Res       Date:  2014-05-12       Impact factor: 5.922

8.  Hepatic lipase gene -514C/T polymorphism in the Guangxi Hei Yi Zhuang and Han populations.

Authors:  Jinzhen Wu; Ruixing Yin; Weixiong Lin; Shangling Pan; Dezhai Yang
Journal:  Lipids       Date:  2008-07-01       Impact factor: 1.880

9.  Hypertriglyceridemia and cholesteryl ester transfer protein interact to dramatically alter high density lipoprotein levels, particle sizes, and metabolism. Studies in transgenic mice.

Authors:  T Hayek; N Azrolan; R B Verdery; A Walsh; T Chajek-Shaul; L B Agellon; A R Tall; J L Breslow
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10.  Diagnostic value of post-heparin lipase testing in detecting common genetic variants in the LPL and LIPC genes.

Authors:  Mandy van Hoek; Geesje M Dallinga-Thie; Ewout W Steyerberg; Eric J G Sijbrands
Journal:  Eur J Hum Genet       Date:  2009-04-15       Impact factor: 4.246

  10 in total

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