Clustering of anthropometric parameters, glucose tolerance, and serum lipids in children with high and low beta- and pre-beta-lipoproteins. Bogalusa Heart Study.
Author(s) -
A W Voors,
D W Harsha,
Larry S. Webber,
B. Radhakrishnamurthy,
S R Srinivasan,
Gerald S. Berenson
Publication year - 1982
Publication title -
arteriosclerosis an official journal of the american heart association inc
Language(s) - English
Resource type - Journals
eISSN - 2330-9180
pISSN - 0276-5047
DOI - 10.1161/01.atv.2.4.346
Subject(s) - medicine , endocrinology , anthropometry , beta (programming language) , insulin , quartile , cholesterol , obesity , confidence interval , computer science , programming language
Children initially aged 21/2 to 14 years living in Bogalusa, Louisiana (n = 2530) were examined twice, 3 years apart, for fasting serum pre-beta- and beta-lipoprotein cholesterol (beta-LPC) levels. Based on averages of these levels, the children were ranked for pre-beta- and beta-LPC in combinations of extreme quintiles (low-low, high-high) or quartiles (low-high, high-low), n = 388, and were reexamined for serum lipids, lipoprotein cholesterol, glucose tolerance, and anthropometry. Skinfolds were thicker in whites than in blacks except for subscapular skinfold. Children in the high-high stratum were heavier and more obese. The postglucose insulin level was positively correlated with fasting serum triglycerides and pre-beta-LPC. Compared with other strata, high-high strata showed more clustering among half-hour and 1-hour plasma insulin, serum triglycerides and pre-beta-LPC, and trunk skinfolds. We conclude that racial differences in lipid and carbohydrate metabolism occur in all four strata, and that a strong clustering occurs more in the high-high stratum, which may, in part, explain the coincidence of several high cardiovascular risk factor levels observed in the same children. These observations document in free-living children changes of obesity, plasma glucose, and insulin metabolism related to serum lipoproteins that are involved in the early natural history of atherosclerosis.
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