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Published on: August 28, 2018
Relative familial clustering of cerebral versus coronary ischemic events
Amitava Banerjee1, Louise E Silver, Carl Heneghan
1Stroke Prevention Research Unit, University of Oxford, United Kingdom.
Insights
Coronary events like myocardial infarction are more heritable than cerebral events such as stroke. This suggests genetic factors play a larger role in heart disease clustering within families.
Area of Science:
- Cardiovascular genetics
- Neurology
- Epidemiology
Background:
- Few studies compare heritability of cerebral and coronary events.
- Understanding relative heritability can inform risk prediction and genetic studies for vascular diseases.
Purpose of the Study:
- To ascertain and compare the heritability of cerebral and coronary vascular events.
- To investigate the association between family history and the incidence of myocardial infarction and stroke.
Main Methods:
- Population-based study of acute vascular events.
- Collected family history of myocardial infarction (MI), stroke, and risk factors in first-degree relatives.
- Analyzed parental history association with affected siblings within disease categories.
Main Results:
- Parental MI was significantly associated with sibling MI in acute coronary syndrome (ACS) probands (OR 1.48-5.97).
- Parental stroke was not associated with sibling stroke in cerebral event probands.
- ACS cases were more likely to occur in families with multiple affected relatives (15.7%) compared to transient ischemic attack/strokes (5.1%).
Conclusions:
- Coronary events exhibit greater heritability than cerebral events.
- Myocardial infarction clusters more strongly in families than stroke.
Background:
Few population-based studies have ascertained both cerebral and coronary events or considered their relative heritability. Differences in heritability of transient ischemic attack and ischemic stroke versus acute coronary syndromes (ACS) may inform risk prediction, genetic studies, and understanding of disease mechanisms.
Methods And Results:
In a population-based study of all acute vascular events, irrespective of age, we studied family history of myocardial infarction (MI), stroke, and related risk factors in first-degree relatives. To allow for differences in rates of affected first-degree relatives caused by differences in disease incidence, we looked at the extent to which parental history was associated with affected siblings within disease category. Nine hundred six probands (604 men; mean age, 70 years) with ACS and 1015 (484 men; mean age, 73 years) with cerebral events had complete family history data. In ACS probands, parental MI was associated with MI in ≥1 sibling (1 parent with MI: odds ratio, 1.48; 1.04 to 2.10; P=0.03; both parents with MI: odds ratio, 5.97; 3.23 to 11.03; P<0.0001). In probands with cerebral events, however, parental stroke was not associated with sibling stroke. The overall frequency of ≥2 siblings with the same condition was also greater in probands with ACS than in those with cerebral events (odds ratio, 5.43; 3.03 to 9.76; P<0.00001), despite similar overall incidence of MI and stroke in our study population. One hundred forty-two (15.7%) cases of ACS occurred in families with ≥2 affected first-degree relatives compared with 56 (5.1%) transient ischemic attack/strokes. All results were similar when analyses were confined to probands with MI only versus stroke only, and independent of smoking.
Conclusions:
Heritability of coronary events was greater than that of cerebral events, such that MI was more likely to cluster in families than was stroke.
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