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Published on: December 15, 2023
Influence of sex on microvascular and macrovascular responses to prolonged sitting
Jennifer R Vranish1, Benjamin E Young1, Jasdeep Kaur1
1Department of Kinesiology, University of Texas at Arlington, Arlington, Texas; and.
Insights
Prolonged sitting impairs vascular function. Young men showed reduced macrovascular function after sitting, while women
Area of Science:
- Cardiovascular Physiology
- Vascular Biology
- Human Physiology
Background:
- Increased daily sitting time is linked to higher cardiovascular risk.
- Sedentary behavior disproportionately affects women compared to men.
- Prolonged sitting negatively impacts lower leg microvascular and macrovascular vasodilator function, primarily studied in men.
Purpose of the Study:
- To investigate the effects of a 3-hour sitting period on popliteal artery vasodilator function in healthy young women and men.
- To explore potential sex differences in vascular responses to prolonged sitting.
- To assess microvascular (reactive hyperemia) and macrovascular (flow-mediated dilation) function after sitting.
Main Methods:
- Recruitment of healthy young women (n=12) and men (n=8).
- Measurement of popliteal artery reactive hyperemia and flow-mediated dilation (FMD) before and after a 3-hour sitting period.
- Assessment of resting popliteal artery hemodynamics and calf circumference using duplex Doppler ultrasound.
Main Results:
- Resting popliteal artery shear rate and calf circumference increased similarly in both sexes during sitting.
- Popliteal artery FMD significantly decreased in men post-sitting but remained unchanged in women.
- Both men and women exhibited comparable reductions in hyperemic blood flow area under the curve, indicating impaired microvascular reactivity.
Conclusions:
- Young men consistently experience reductions in leg macrovascular function after prolonged sitting.
- Young women may exhibit protected macrovascular function, though responses can be variable.
- Leg microvasculature in both sexes is similarly susceptible to impairments from prolonged sitting, highlighting sex-specific vascular responses.
Abstract:
Increased daily sitting time is associated with greater cardiovascular risk, and, on average, women are more sedentary than men. Recent reports have demonstrated that prolonged sitting reduces lower leg microvascular (reactive hyperemia) and macrovascular [flow-mediated dilation (FMD)] vasodilator function. However, these studies have predominately included men, and the effects of sitting in young women are largely unexplored. This becomes important given known sex differences in vascular function. Thus, herein, we assessed popliteal artery reactive hyperemia and FMD before and after a 3-h sitting period in healthy young women (n = 12) and men (n = 8). In addition, resting popliteal artery hemodynamics (duplex Doppler ultrasound) and calf circumference were measured before, during, and after sitting. Resting popliteal artery shear rate was reduced to a similar extent in both groups during the sitting period (women: -48.5 ± 8.4 s-1 and men: -52.9 ± 12.3 s-1, P = 0.45). This was accompanied by comparable increases in calf circumference in men and women (P = 0.37). After the sitting period, popliteal artery FMD was significantly reduced in men (PreSit: 5.5 ± 0.9% and PostSit: 1.6 ± 0.4%, P < 0.001) but not women (PreSit: 4.4 ± 0.6% and PostSit: 3.6 ± 0.6%, P = 0.29). In contrast, both groups demonstrated similar reductions in hyperemic blood flow area under the curve (women: -28,860 ± 5,742 arbitrary units and men: -28,691 ± 9,685 arbitrary units, P = 0.99), indicating impaired microvascular reactivity after sitting. These findings indicate that despite comparable reductions in shear rate during 3 h of uninterrupted sitting, macrovascular function appears protected in some young women but the response was variable, whereas men exhibited more consistent reductions in FMD. In contrast, the leg microvasculature is susceptible to similar sitting-induced impairments in men and women.NEW & NOTEWORTHY We demonstrate that leg macrovascular function was consistently reduced in young men but not young women after prolonged sitting. In contrast, both men and women exhibited similar reductions in leg microvascular reactivity after sitting. These data demonstrate, for the first time, sex differences in vascular responses to prolonged sitting.
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