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. 2006 Dec 5;28(9):433–436. doi: 10.1002/clc.4960280909

Peripheral vascular endothelial function correlates with exercise capacity in women

Ayan R Patel 1,†,, Jeffrey T Kuvin 1, Kathleen A Sliney 1, William M Rand 2, Natesa G Pandian 1, Richard H Karas 3
PMCID: PMC6654762  PMID: 16250267

Abstract

Background: Vascular endothelial function has been observed to correlate with exercise capacity in predominantly male populations. Gender‐based differences exist in the clinical course of coronary artery disease, and previous studies indicate that estrogen may influence endothelial function. These observations raise the possibility that the relationship between endothelial function and exercise capacity in women may differ from that in men.

Hypothesis: This study aimed to determine whether peripheral vascular endothelial function correlates with exercise capacity in women.

Methods: Women who were referred for clinically indicated exercise testing with technetium‐99 myocardial perfusion imaging were consecutively recruited. To ensure a population free of exercise limitation due to ischemic heart disease, women without myocardial perfusion defects were included for analysis in this study (n =105). Endothelial function was assessed by brachial artery ultrasound flow‐mediated vasodilation (FMD). Exercise capacity was defined as the duration of exercise on a symptom‐limited Bruce protocol.

Results: Mean FMD was 11.8 ± 0.6%, and median FMD was 12%. Subjects with an FMD less than the median of 12% had a significantly shorter exercise time than those with FMD ≥ 12% (411 ± 17 vs. 482 ± 24s, p = 0.014). There was a significant correlation between FMD and exercise time (r = 0.34, p < 0.001). Age and body mass index were additional predictors of exercise time; however, the relationship between FMD and exercise time was independent of these variables.

Conclusion: Brachial artery FMD correlates with exercise capacity in women, even in the absence of ischemic heart disease.

Keywords: endothelium, exercise capacity, women

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References

  • 1. Al Suwaidi J, Hamasaki S, Higano S, Nishimura RA, Holmes DR, Lerman A: Long‐term follow‐up of patients with mild coronary artery disease and endothelial dysfunction. Circulation 2000; 101: 948–954 [DOI] [PubMed] [Google Scholar]
  • 2. Schachinger V, Britten MB, Zeiher AM: Prognostic impact of coronary vasodilator dysfunction on adverse long‐term outcome of coronary heart disease. Circulation 2000; 101: 1899–1906 [DOI] [PubMed] [Google Scholar]
  • 3. Neunteufl T, Heher S, Katzenschlager R, Wolfl G, Kostner K, Maurer G, Weidinger F: Late prognostic value of flow‐mediated dilation in the brachial artery of patients with chest pain. Am J Cardiol 2000; 86: 207–210 [DOI] [PubMed] [Google Scholar]
  • 4. Gokce N, Keaney JF, Hunter LM, Watkins MT, Nedeljkovic ZS, Menzoian JO, Vita JA: Predictive value of noninvasively determined endothelial dysfunction for long‐term cardiovascular events in patients with peripheral vascular disease. J Am Coll Cardiol 2003; 41: 1769–1775 [DOI] [PubMed] [Google Scholar]
  • 5. Halcox JP, Schenke WH, Zalos G, Mincemoyer R, Prasad A, Waclawiw MA, Nour KR, Quyyumi AA: Prognostic value of coronary vascular endothelial dysfunction. Circulation 2002; 106: 653–658 [DOI] [PubMed] [Google Scholar]
  • 6. Patel AR, Kuvin JT, Pandian NG, Smith JJ, Udelson JE, Mendelsohn ME, Konstam MA, Karas RH: Heart failure etiology affects peripheral vascular endothelial function after cardiac transplantation. J Am Coll Cardiol 2001; 37: 195–200 [DOI] [PubMed] [Google Scholar]
  • 7. Linke A, Schoene N, Gielen S, Hofer J, Erbs S, Schuler G, Hambrecht R: Endothelial dysfunction in patients with chronic heart failure: Systemic effects of lower‐limb exercise training. J Am Coll Cardiol 2001; 37: 392–397 [DOI] [PubMed] [Google Scholar]
  • 8. Kuvin JT, Patel AR, Sliney KA, Pandian NG, Rand WM, Udelson JE, Karas RH: Peripheral vascular endothelial function testing as a noninvasive indicator or coronary artery disease. J Am Coll Cardiol 2001; 38: 1843–1849 [DOI] [PubMed] [Google Scholar]
  • 9. Mosca L, Appel LJ, Benjamin EJ, Berra K, Chandra‐Strobos N, Fabunmi RP, Grady D, Haan CK, Hayes SN, Judelson DR, Keenan NL, McBride P, Oparil S, Ouyang P, Oz MC, Mendelson ME, Pasternak RC, Pinn VW, Robertson RM, Schenck‐Gustafsson K, Sila CA, Smith SC Jr, Sopko G, Taylor AL, Walsh BW, Wenger NK, Williams CL: Evidence‐based guidelines for cardiovascular disease prevention in women. Circulation 2004; 109: 672–693 [DOI] [PubMed] [Google Scholar]
  • 10. Lieberman EH, Gerhard MD, Uehata A, Walsh BW, Selwyn AP, Ganz P, Yeung AC, Creager MA: Estrogen improves endothelium‐dependent flow‐mediated vasodilation in postmenopausal women. Ann Intern Med 1994; 121: 936–941 [DOI] [PubMed] [Google Scholar]
  • 11. Gerhard M, Walsh BW, Tawakol A: Estradiol therapy combined with progesterone and endothelium‐dependent vasodilation in postmenopausal women. Circulation 1998; 98: 1158–1163 [DOI] [PubMed] [Google Scholar]
  • 12. Bush DE, Jones CE, Bass KM, Walters GK, Bruza JM, Ouyang P: Estrogen replacement reverses endothelial dysfunction in postmenopausal women. Am J Med 1998; 104: 552–558 [DOI] [PubMed] [Google Scholar]
  • 13. Koh KK, Jin DK, Yang SH, Lee SK, Hwang HY, Kang MH, Kim W, Kim DS, Choic IS, Shin EK: Vascular effects of synthetic or natural progestagen combined with conjugated equine estrogen in healthy postmenopausal women. Circulation 2001; 103: 1961–1966 [DOI] [PubMed] [Google Scholar]
  • 14. Koh KK, Cardillo C, Bui MN, Hathaway L, Csabo G, Waclawiw MA, Panza JA, Cannon RO: Vascular effects of estrogen and cholesterol‐lowering therapies in hypercholesterolemic postmenopausal women. Circulation 1999; 99: 354–360 [DOI] [PubMed] [Google Scholar]
  • 15. Patel AR, Kuvin JT, DeNofrio D, Kinan D, Sliney KA, Eranki KP, Pandian NG, Udelson JE, Konstam MA, Karas RH: Peripheral vascular endothelial function correlates with exercise capacity in cardiac transplant recipients. Am J Cardiol 2003; 91: 897–899 [DOI] [PubMed] [Google Scholar]
  • 16. Sorensen KE, Celermajer DS, Spiegelhalter DJ, Georgakopoulos D, Robinson J, Thomas O, Deanfield JE: Non‐invasive measurement of human endothelium‐dependent arterial response: Accuracy and reproducibility. Br Heart J 1995; 74: 247–253 [DOI] [PMC free article] [PubMed] [Google Scholar]
  • 17. Corretti MC, Plotnick GD, Vogel RA: Technical aspects of evaluating brachial artery vasodilation using high‐frequency ultrasound. Am J Physiol 1995; 268 (4 pt. 2): H1397–H1404 [DOI] [PubMed] [Google Scholar]
  • 18. Andreassen AK, Kvernebo K, Jorgensen B, Simonsen S, Kjeksjus J, Gullestad L: Exercise capacity in heart transplant recipients: Relation to impaired endothelium‐dependent vasodilation of the peripheral microcirculation. Am Heart J 1998; 136: 320–328 [DOI] [PubMed] [Google Scholar]
  • 19. Maxwell AJ, Zapien MP, Pearce GL, MacCallum G, Stone PH: Randomized trial of a medical food for the dietary management of chronic stable angina. J Am Coll Cardiol 2002; 39: 37–45 [DOI] [PubMed] [Google Scholar]
  • 20. Hambrecht R, Hilbrich L, Erbs S, Gelen S, Fiehn E, Schoene N, Shuler G: Correction of endothelial dysfunction in chronic heart failure: Additional effects of exercise training and oral l‐arginine supplementation. J Am Coll Cardiol 2000; 35: 706–713 [DOI] [PubMed] [Google Scholar]
  • 21. Rector TS, Bank AJ, Mullen KA, Tschumperlin LK, Sih P, Pillai K, Kubo SH: Randomized, double‐blind, placebo‐controlled study of supplemental oral l‐arginine in patients with heart failure. Circulation 1996; 93: 2135–2141 [DOI] [PubMed] [Google Scholar]
  • 22. Hambrecht R, Walther C, Mobius‐Winkler S, Gielen S, Linke A, Conradi K, Erbs S, Kluge R, Kendziorra K, Sabri O, Sick P, Schuler G: Percutaneous coronary angioplasty compared with exercise training in patients with stable coronary artery disease. Circulation 2004; 109: 1371–1378 [DOI] [PubMed] [Google Scholar]
  • 23. Katz SD, Krum H, Khan T, Knecht M: Exercise‐induced vasodilation in forearm circulation of normal subjects and patients with congestive heart failure: Role of endothelium‐derived nitric oxide. J Am Coll Cardiol 1996; 28: 585–590 [DOI] [PubMed] [Google Scholar]
  • 24. Hirai T, Visneski MD, Kearns KJ, Zelis R, Musch TI: Effects of NO synthase inhibition on the muscular blood flow response to treadmill exercise in rats. J Appl Physiol 1994; 1288–1293 [DOI] [PubMed]
  • 25. Gilligan DM, Panza JA, Kilcoyne CM, Waclawiw MA, Casino PR, Quyyumi AA: Contribution of endothelium‐derived nitric oxide to exercise‐induced vasodilation. Circulation 90: 1853–1858 [DOI] [PubMed] [Google Scholar]

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