Epidemiology of Atherosclerosis
Primary Purpose
Atherosclerosis, Cardiovascular Diseases, Heart Diseases
Status
Completed
Phase
Locations
Study Type
Observational
Intervention
Sponsored by
About this trial
This is an observational trial for Atherosclerosis
Eligibility Criteria
No eligibility criteria
Sites / Locations
Outcomes
Primary Outcome Measures
Secondary Outcome Measures
Full Information
NCT ID
NCT00005147
First Posted
May 25, 2000
Last Updated
May 12, 2016
Sponsor
National Heart, Lung, and Blood Institute (NHLBI)
1. Study Identification
Unique Protocol Identification Number
NCT00005147
Brief Title
Epidemiology of Atherosclerosis
Study Type
Observational
2. Study Status
Record Verification Date
April 2000
Overall Recruitment Status
Completed
Study Start Date
September 1979 (undefined)
Primary Completion Date
undefined (undefined)
Study Completion Date
June 1991 (Actual)
3. Sponsor/Collaborators
Name of the Sponsor
National Heart, Lung, and Blood Institute (NHLBI)
4. Oversight
5. Study Description
Brief Summary
To determine the role of genetic factors in predicting resistance and susceptibility to coronary artery disease.
Detailed Description
BACKGROUND:
Coronary artery disease appears to be a consequence of the interaction between an individual's genotype and exposure to environmental factors. Genetic information has the potential to contribute to the identification of families and individuals with a biological predisposition for developing coronary artery disease. Although numerous studies have suggested the possibility of a link between polymorphic genetic variation and coronary heart disease, it has not been possible to use any single genetic locus or combination of loci to establish a person's risk except for the case of familial hypercholesterolemia.
Apolipoproteins play a critical role in regulating cellular uptake of lipoproteins by specific receptors, regulating the activities of lipoprotein lipase and lecithin-cholesterol acyl transferase, and in the indirect regulation of the intracellular enzymes, acyl-cholesterol acyl transferase and HMG Co-A reductase. This study provided insight into the role of environmental and genetic effects on phenotypic variation of the individual components of the molecules of lipid metabolism as well as on the relationships between components.
Previous studies conducted under this grant include: the relationship between quantitative levels of apo A-I and coronary artery disease as defined by coronary angiography; the effects of exercise, alcohol, obesity, and pregnancy on apo A-I levels; the relationship between apo A-I and HDL levels in children and the mode of inheritance of apo A-I levels in pedigrees in the Rochester, Minnesota community; and characterization of the antigenic structure of apolipoproteins in coronary artery disease.
DESIGN NARRATIVE:
Subjects for the study were drawn from the Rochester Family Heart Study which initiated recruitment for the family study in January 1985. In 31 months of recruitment, 443 households were contacted and 300 agreed to participate. In August 1987 all individuals identified by these households had completed their clinic visits providing 1,999 physical exams. The 300 households yielded 276 three and four generation pedigrees with 593 parents, 598 grandparents, 14 great-grandparents, and 854 children. Disease information was obtained from medical records for an additional 400 grandparents. In 1988 an additional 2,100 individual members of 300 families were surveyed.
Medical records and death certificates were reviewed to evaluate coronary artery disease endpoints in all adults members of the pedigrees. Clinical data collected included: a history of symptoms of coronary artery disease, arteriosclerosis obliterans, cerebrovascular disease or surgery for these diseases; smoking; medication; history of genetic relationships. Measurements were made of cholesterol, triglycerides, HDL and LDL cholesterol, apo A-I, apo A-II, apo E, apo C-III, apo C-II, apo B, apo Lp(a), LDL apo B, HDL apo E, and DNA extraction. Lipid, lipoprotein, and apolipoprotein phenotypes and the restriction fragment length polymorphisms (RFLP) were measured in candidate genes for coronary artery disease. Genetic and phenotype analyses were conducted at the University of Michigan. The RFLP and apolipoprotein isotyping analyses were conducted at the University of Pittsburgh. RFLP analysis and LDL receptor and A-I gene analysis were conducted at Charing Cross Medical Center in London, England.
The study completion date listed in this record was obtained from the "End Date" entered in the Protocol Registration and Results System (PRS) record.
6. Conditions and Keywords
Primary Disease or Condition Being Studied in the Trial, or the Focus of the Study
Atherosclerosis, Cardiovascular Diseases, Heart Diseases, Coronary Arteriosclerosis
7. Study Design
10. Eligibility
Sex
Male
Maximum Age & Unit of Time
100 Years
Accepts Healthy Volunteers
No
Eligibility Criteria
No eligibility criteria
12. IPD Sharing Statement
Citations:
PubMed Identifier
1398044
Citation
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Citation
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8462388
Citation
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6410239
Citation
Maciejko JJ, Holmes DR, Kottke BA, Zinsmeister AR, Dinh DM, Mao SJ. Apolipoprotein A-I as a marker of angiographically assessed coronary-artery disease. N Engl J Med. 1983 Aug 18;309(7):385-9. doi: 10.1056/NEJM198308183090701.
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Moll PP, Sing CF, Weidman WH, Gordon H, Ellefson RD, Hodgson PA, Kottke BA. Total cholesterol and lipoproteins in school children: prediction of coronary heart disease in adult relatives. Circulation. 1983 Jan;67(1):127-34. doi: 10.1161/01.cir.67.1.127.
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PubMed Identifier
6607671
Citation
Moll PP, Berry TD, Weidman WH, Ellefson R, Gordon H, Kottke BA. Detection of genetic heterogeneity among pedigrees through complex segregation analysis: an application to hypercholesterolemia. Am J Hum Genet. 1984 Jan;36(1):197-211.
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6544242
Citation
Moll PP, Sing CF, Lussier-Cacan S, Davignon J. An application of a model for a genotype-dependent relationship between a concomitant (age) and a quantitative trait (LDL cholesterol) in pedigree data. Genet Epidemiol. 1984;1(4):301-14. doi: 10.1002/gepi.1370010403.
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3906666
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Citation
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Citation
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Kottke BA, Friedlaender JS, Zerba KE, Sing CF. Lipid and apolipoprotein levels in six Solomon Island societies differ from those in a U.S. white population. Am J Phys Anthropol. 1990 Apr;81(4):483-91. doi: 10.1002/ajpa.1330810405.
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Reilly SL, Kottke BA, Sing CF. The effects of generation and gender on the joint distributions of lipid and apolipoprotein phenotypes in the population at large. J Clin Epidemiol. 1990;43(9):921-40. doi: 10.1016/0895-4356(90)90076-2.
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Reilly SL, Ferrell RE, Kottke BA, Sing CF. The gender-specific apolipoprotein E genotype influence on the distribution of plasma lipids and apolipoproteins in the population of Rochester, Minnesota. II. Regression relationships with concomitants. Am J Hum Genet. 1992 Dec;51(6):1311-24.
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Turner ST, Rebbeck TR, Sing CF. Sodium-lithium countertransport and probability of hypertension in Caucasians 47 to 89 years old. Hypertension. 1992 Dec;20(6):841-50. doi: 10.1161/01.hyp.20.6.841.
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2088166
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Epidemiology of Atherosclerosis
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