Coronary artery microvascular dysfunction: Role of sex and arterial load
Thais Coutinho1, Lisa M Mielniczuk2, Kajenny Srivaratharajah3
1Division of Cardiology, Division of Cardiac Prevention and Rehabilitation, Canadian Women's Heart Health Centre, University of Ottawa Heart Institute, Ottawa, ON, Canada.
Insights
Lower arterial compliance is linked to poorer coronary microvascular function in women, but not men. This finding may explain cardiovascular risks in women with hypertension.
Area of Science:
- Cardiology
- Vascular Biology
- Biomedical Engineering
Background:
- Cardiovascular disease prognosis is worse in women, partly due to coronary microvascular dysfunction.
- Women experience greater age-related increases in arterial load and have lower arterial compliance.
- The differential impact of arterial load on the coronary microvasculature in men versus women is not well understood.
Purpose of the Study:
- To investigate the association between arterial load, specifically indexed arterial compliance (ACi), and coronary microvascular function in women.
- To determine if this association differs between men and women.
Main Methods:
- Cardiac 82Rb positron-emission tomography was used to assess myocardial flow reserve (MFR) in 285 subjects (60% women).
- Pulsatile arterial load was estimated using indexed arterial compliance (ACi).
- Multivariable linear regression analyzed the relationship between ACi and MFR, adjusting for confounders.
Main Results:
- Indexed arterial compliance (ACi) was significantly lower in women compared to men.
- Lower ACi was associated with lower myocardial flow reserve (MFR) in women (P=0.004).
- This association between ACi and MFR was not observed in men (P=0.75).
Conclusions:
- Reduced arterial compliance is associated with impaired coronary microvascular function in women.
- Low arterial compliance may represent a key link between hypertension, coronary microvascular dysfunction, and adverse cardiovascular outcomes in women.
Background:
The prognosis of cardiovascular disease is worse in women than men, and coronary microvascular dysfunction explains the excess cardiovascular risk in women. In addition, age-related increases in pulsatile arterial load are greater in women than men; and lower arterial compliance has been shown to independently predict cardiovascular events. However, whether arterial load differentially affects the coronary microvasculature in men and women remains unknown. We hypothesized that lower arterial compliance would be associated with coronary artery microvascular dysfunction in women.
Methods And Results:
285 subjects (60% women, age: 61.2 ± 11.0 yrs) undergoing cardiac 82Rb positron-emission tomography between 2010 and 2013, with ejection fraction ≥50%, no heart failure, dyspnea, coronary artery disease or regional perfusion defects were included. Left ventricular microvascular function was assessed by myocardial flow reserve (MFR). Pulsatile arterial load was estimated by indexed arterial compliance [ACi: (stroke volume/pulse pressure)/BSA]. Multivariable linear regression evaluated associations of arterial compliance with myocardial flow reserve after adjustment for confounders. ACi was lower in women than men [0.39 ± 0.15 vs. 0.52 ± 0.28 (mL/mm Hg)/m2, P < 0.0001]. We found that the effect of ACi on MFR differs by sex: lower ACi was associated with lower MFR in women (β ± SE: 0.20 ± 0.07, P = 0.004) but not in men (0.03 ± 0.11, P = 0.75).
Conclusions:
Lower ACi was associated with altered coronary microvascular function in women, but not in men. Our findings highlight low arterial compliance as a potential link between hypertension, coronary microvascular dysfunction and adverse cardiovascular events in women.
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