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Review

How to improve endothelial repair mechanisms: the lifestyle approach

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Pages 573-580 | Published online: 10 Jan 2014

References

  • Aird WC. Phenotypic heterogeneity of the endothelium: representative vascular beds. Circ. Res.100, 174–190 (2007).
  • Furchgott RF, Zawadzki JV. The obligatory role of endothelial cells in the relaxation of arterial smooth muscle by acetylcholine. Nature288(5789), 373–376 (1980).
  • Ignarro LJ, Buga GM, Wood KS, Byrns RE, Chaudhuri G. Endothelium-derived relaxing factor produced and released from artery and vein is nitric oxide. Proc. Natl Acad. Sci. USA84(24), 9265–9269 (1987).
  • Lüscher TF, Dohi Y, Tanner FC, Boulanger C. Endothelium-dependent control of vascular tone: effects of age, hypertension and lipids. Basic Res. Cardiol.86(Suppl. 2), 143–158 (1991).
  • Ludmer PL, Selwyn AP, Shook TL et al. Paradoxical vasoconstriction induced by acetylcholine in atherosclerotic coronary arteries. N. Engl. J. Med.315(17), 1046–1051 (1986).
  • Drexler H, Hayoz D, Münzel T et al. Endothelial function in chronic congestive heart failure. Am. J. Cardiol.69(19), 1596–1601 (1992).
  • Landmesser U, Hornig B, Drexler H; Endothelial function: a critical determinant in atherosclerosis? Circulation109(Suppl. II), II-27–II-33 (2004).
  • Schächinger V, Britten MB, Zeiher AM. Prognostic impact of coronary vasodilator dysfunction on adverse long-term outcome of coronary heart disease. Circulation101(16), 1899–1906 (2000).
  • Kern MJ, Lerman A, Bech JW et al: Physiological assessment of coronary artery disease in the cardiac catheterization laboratory. A scientific statement from the AHA committee on diagnostic and interventional cardiac catheterization, council on clinical cardiology. Circulation114, 1–21 (2006).
  • Ludmer PL, Selwyn AP, Shook TL et al. Paradoxical vasoconstriction induced by acetylcholine in atherosclerotic coronary arteries. N. Engl. J. Med.315(17), 1046–1051 (1986).
  • Landmesser U, Dikalov S, Price SR et al. Oxidation of tetrahydrobiopterin leads to uncoupling of endothelial cell nitric oxide synthase in hypertension. J. Clin. Invest.111, 1201–1209 (2003).
  • Wassmann S, Wassmann K, Nickenig G. Modulation of oxidant and antioxidant enzyme expression and function in vascular cells. Hypertension44, 381–386 (2004).
  • Landmesser U, Merten R, Spiekermann S, Büttner K, Drexler H, Hornig B. Vascular extracellular superoxide dismutase activity in patients with coronary artery disease. Circulation101, 2264–2270 (2000).
  • Celermajer DS, Sorensen KE, Gooch VM et al. Non-invasive detection of endothelial dysfunction in children and adults at risk for atherosclerosis. Lancet340, 1111–1115 (1992).
  • Corretti MC, Anderson TJ, Benjamin EJ et al. International Brachial Artery Reactivity Task Force. Guidelines for the ultrasound assessment of endothelial-dependent flow-mediated vasodilation of the brachial artery: a report of the International Brachial Artery Reactivity Task Force. J. Am. Coll. Cardiol.39(2), 257–265 (2002).
  • Bonetti PO, Pumper GM, Higano ST, Holmes DR Jr, Kuvin JT, Lerman A. Noninvasive identification of patients with early coronary atherosclerosis by assessment of digital reactive hyperemia. JACC44(11), 2137–2141 (2004).
  • Selamet Tierney ES, Newburger JW, Gauvreau K et al. Endothelial pulse amplitude testing: feasibility and reproducibility in adolescents. J. Pediatr.154(6), 901–905 (2009).
  • Bonetti PO, Barsness GW, Keelan PC et al. Enhanced external counterpulsation improves endothelial function in patients with symptomatic coronary artery disease, J. Am. Coll. Cardiol.41, 1761–1768 (2003).
  • Dicheck DA. Retroviral vector-mediated gene transfer into endothelial cells. Mol. Biol. Med.8(2), 257–266 (1991).
  • Hambrecht R, Hilbrich L, Erbs S et al. Correction of endothelial dysfunction in chronic heart failure: additional effects of exercise training and oral L-arginine supplementation. J. Am. Coll. Cardiol.35(3), 706–713 (2000).
  • Asahara T, Murohara T, Sullivan A et al. Isolation of putative progenitor endothelial cells for angiogenesis. Science275(5302), 964–967 (1997).
  • Sorrentino SA, Bahlmann FH, Besler C et al. Oxidant stress impairs in vivo reendothelialization capacity of endothelial progenitor cells from patients with Type 2 diabetes mellitus: restoration by the peroxisome proliferator-activated receptor-g agonist rosiglitazone. Circulation116, 163–173 (2007).
  • Erbs S, Linke A, Schächinger V et al. Restoration of microvascular function in the infarct-related artery by intracoronary transplantation of bone marrow progenitor cells in patients with acute myocardial infarction: the Doppler S ubstudy of the Reinfusion of Enriched Progenitor Cells and Infarct Remodeling in Acute Myocardial Infarction (REPAIR-AMI) trial. Circulation116(4), 366–374 (2007).
  • Erbs S, Linke A, Schuler G, Hambrecht R. Intracoronary administration of circulating blood-derived progenitor cells after recanalization of chronic coronary artery occlusion improves endothelial function. Circ. Res.98(5), e48 (2006).
  • Hill JM, Zalos G, Halcox JP et al. Circulating endothelial progenitor cells, vascular function, and cardiovascular risk. N. Engl. J. Med.348(7), 593–600 (2003).
  • Vasa M, Fichtlscherer S, Aicher A et al. Number and migratory activity of circulating endothelial progenitor cells inversely correlate with risk factors for coronary artery disease. Circ. Res.89(1), E1–E7 (2001).
  • Werner N, Kosiol S, Schiegl T et al. Circulating endothelial progenitor cells and cardiovascular outcomes. N. Engl. J. Med.353(10), 999–1007 (2005).
  • Perez-Martinez P, Moreno-Conde M, Cruz-Teno C et al. Dietary fat differentially influences regulatory endothelial function during the postprandial state in patients with metabolic syndrome: From the LIPGENE study. Atherosclerosis DOI: 10.1016/j.atherosclerosis.2009.09.023 (2009) (Epub ahead of print).
  • Soylemez S, Sepici A, Akar F. Resveratrol supplementation gender independently improves endothelial reactivity and suppresses superoxide production in healthy rats. Cardiovasc. Drugs Ther.23, 449–458 (2009).
  • Wang XB, Huang J, Zou JG et al. Effects of resveratrol on number and activity of endothelial progenitor cells from human peripheral blood. Clin. Exp. Pharmacol. Physiol.34(11), 1109–1115 (2007).
  • Paffenbarger RS Jr, Hyde RT, Wing AL, Hsieh CC. Physical activity, all-cause mortality, and longevity of college alumni. N. Engl. J. Med.314(10), 605–613 (1986).
  • Wannamethee SG, Shaper AG, Walker M. Physical activity and mortality in older men with diagnosed coronary heart disease. Circulation.102(12), 1358–1363 (2000).
  • Hambrecht R, Wolf A, Gielen S et al. Effect of exercise on coronary endothelial function in patients with coronary artery disease. N. Engl. J. Med.342(7), 454–460 (2000).
  • Hambrecht R, Fiehn E, Weigl C et al. Regular physical exercise corrects endothelial dysfunction and improves exercise capacity in patients with chronic heart failure. Circulation98, 2709–2715 (1998).
  • Maiorana A, O’Driscoll G, Dembo L et al. Effect of aerobic and resistance exercise training on vascular function in heart failure. Am. J. Physiol. Heart Circ. Physiol.279(4), H1999–H2005 (2000).
  • Linke A, Schoene N, Gielen S et al. Endothelial dysfunction in patients with chronic heart failure: systemic effects of lower-limb exercise training. J. Am. Coll. Cardiol.37(2), 392–397 (2001).
  • Adams V, Linke A, Kränkel N et al. Impact of regular physical activity on the NAD(P)H oxidase and angiotensin receptor system in patients with coronary artery disease. Circulation111(5), 555–562 (2005).
  • Leosco D, Rengo G, Iaccarino G et al. Exercise promotes angiogenesis and improves β-adrenergic receptor signalling in the post-ischaemic failing rat heart. Cardiovasc. Res.78(2), 385–394 (2008).
  • Vona M, Codeluppi GM, Iannino T, Ferrari E, Bogousslavsky J, von Segesser LK. Effects of different types of exercise training followed by detraining on endothelium-dependent dilation in patients with recent myocardial infarction. Circulation119(12), 1601–1608 (2009).
  • Zanchi NE, Bechara LR, Tanaka LY, Debbas V, Bartholomeu T, Ramires PR. Moderate exercise training decreases aortic superoxide production in myocardial infarcted rats. Eur. J. Appl. Physiol.104(6), 1045–1052 (2008).
  • Manfredini F, Rigolin GM, Malagoni AM et al. Exercise training and endothelial progenitor cells in haemodialysis patients. J. Int. Med. Res.37(2), 534–540 (2009).
  • Kelly AS, Wetzsteon RJ, Kaiser DR, Steinberger J, Bank AJ, Dengel DR. Inflammation, insulin, and endothelial function in overweight children and adolescents: the role of exercise. J. Pediatr.145, 731–736 (2004).
  • Watts K, Beye P, Siafarikas A et al. Exercise training normalizes vascular dysfunction and improves central adiposity in obese adolescents. J. Am. Coll. Cardiol.43, 1823–1827 (2004).
  • Woo KS, Chook P, Yu CW et al. Effects of diet and exercise on obesity-related vascular dysfunction in children. Circulation109, 1981–1986 (2004).
  • Pahkala K, Heinonen OJ, Lagström H, et al. Vascular endothelial function and leisure-time physical activity in adolescents. Circulation118, 2353–2359 (2008).
  • Walther C, Adams V, Bothur I, et al. Increasing physical education in high school students: effects on concentration of circulating endothelial progenitor cells. Eur. J. Cardiovasc. Prev. Rehabil.15(4), 416–422 (2008).
  • Hambrecht R, Wolff A, Gielen S et al. Effect of exercise on coronary endothelial function in patients with coronary artery disease. N. Engl. J. Med.342, 454–460 (2000).
  • Walsh JH, Bilsborough W, Maiorana A et al. Exercise training improves conduit vessel function in patients with coronary artery disease. J. Appl. Physiol.95, 20–25 (2003).
  • Urbich C, Dimmeler S. Endothelial progenitor cells: characterization and role in vascular biology. Circ. Res.95, 343–353 (2004).
  • Kawamoto A, Losordo DW. Endothelial progenitor cells for cardiovascular regeneration. Trends Cardiovasc. Med.18, 33–37 (2008).
  • Adams V, Lenk K, Linke A et al. Increase of circulating endothelial progenitor cells in patients with coronary artery disease after exercise-induced ischemia. Arterioscler. Thromb. Vasc. Biol.24, 684–690 (2004).
  • Van Craenenbroeck EMF, Vrints CJ, Haine SE et al. A maximal exercise bout increases the number of circulating CD34+/KDR+ endothelial progenitor cells in healthy subjects. Relation with lipid profile. J. Appl. Physiol.104, 1006–1013 (2008).
  • Rehman J, Li J, Parvathaneni L et al. Exercise acutely increases circulating endothelial progenitor cells and monocyte-/macrophage-derived angiogenic cells. J. Am. Coll. Cardiol.43, 2314–2318 (2004).
  • Niebauer J, Cooke JP. Cardiovascular effects of exercise: role of endothelial shear stress. J. Am. Coll. Cardiol.28, 1652–1660 (1996).
  • Laufs U, Werner N, Link A et al. Physical training increases endothelial progenitor cells, inhibition of neointima formation, and enhances angiogenesis. Circulation109, 220–226 (2004).
  • Steiner S, Niessner A, Ziegler S et al. Endurance training increases the number of endothelial progenitor cells in patients with cardiovascular risk and coronary artery disease. Atherosclerosis181, 305–310 (2005).
  • Sandri M, Adams V, Gielen S et al. Effects of exercise and ischemia on mobilization and functional activation of blood-derived progenitor cells in patients with ischemic syndromes: results of 3 randomized studies. Circulation111, 3391–3399 (2005).
  • Sarto P, Balducci E, Balconi G et al. Effects of exercise training on endothelial progenitor cells in patients with chronic heart failure. J. Card. Fail.13, 701–708 (2007).
  • Manfredini F, Rigolin GM, Malagoni AM et al. Exercise capacity and circulating endothelial progenitor cells in hemodialysis patients. Int. J. Sports Med.28, 368–373 (2007).
  • Thijssen DHJ, Vos JB, Verseyden C et al. Haematopoietic stem cells and endothelial progenitor cells in healthy men: effect of aging and training. Aging Cell5, 495–503 (2006).
  • Hoetzer GL, Van Guilder GP, Irmiger HM, Keith RS, Stauffer BL, DeSouza CA. Aging, exercise, and endothelial progenitor cell clonogenic and migratory capacity in men. J. Appl. Physiol.102, 847–852 (2007).

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