Key result
Heterozygous lipoprotein lipase deficiency was associated with significantly increased plasma triglyceride concentrations compared to noncarriers (282 vs 169 mg/dl, p=0.005), with the most conspicuous differences observed after age 40.
Why the study?
Does heterozygous lipoprotein lipase deficiency cause lipid and lipoprotein abnormalities in family members of a homozygous proband?
Cross-Sectional (n=126)
No
Does heterozygous lipoprotein lipase deficiency cause lipid and lipoprotein abnormalities in family members of a homozygous proband?
Absolute Event Rate: 282% vs 169%
p-value: p=0.005
Heterozygous lipoprotein lipase deficiency, combined with age-related influences, accounts for a form of familial hypertriglyceridemia characterized by increased triglycerides and VLDL, and decreased HDL and LDL cholesterol.
May explain familial hypertriglyceridemia in some kindreds after age 40; leaves open need for prospective validation before clinical adoption.
Familial lipoprotein lipase (LPL) deficiency is a rare genetic disorder accompanied by well-characterized manifestations. The phenotypic expression of heterozygous LPL deficiency has not been so clearly defined. We studied the pedigree of a proband known to be homozygous for a mutation resulting in nonfunctional LPL. Hybridization of DNA from 126 members with allele-specific probes detected 29 carriers of the mutant allele. Adipose tissue LPL activity, measured previously, was reduced by 50% in carriers, but did not reliably distinguish them from noncarriers. Carriers were prone to the expression of a form of familial hypertriglyceridemia characterized by increased plasma triglyceride, VLDL cholesterol and apolipoprotein B, and decreased LDL and HDL cholesterol concentrations. These manifestations were age modulated, with conspicuous differences between carriers and noncarriers observed only after age 40. Several noncarriers exhibited similar lipid abnormalities, but without the inverse relationship between VLDL cholesterol and LDL cholesterol noted among carriers. In addition to age and carrier status, the potentially reversible conditions, obesity, hyperinsulinemia and lipid-raising drug use were contributory. Thus heterozygous lipoprotein lipase deficiency, together with age-related influences, may account for a form of familial hypertriglyceridemia.
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Wilson et al. (1990) conducted a cross-sectional in Heterozygous lipoprotein lipase deficiency (n=126). Heterozygous lipoprotein lipase deficiency vs. Noncarriers (normal LPL genotype) was evaluated on Age- and sex-adjusted plasma triglyceride concentration (mg/dl) (p=0.005). Heterozygous lipoprotein lipase deficiency was associated with significantly increased plasma triglyceride concentrations compared to noncarriers (282 vs 169 mg/dl, p=0.005), with the most conspicuous differences observed after age 40.