Органопротективный эффект фиксированной комбинированной антигипертензивной терапии эпросартаном и гидрохлоротиазидом при субклиническом и клиническом поражении органов-мишеней у пациентов с гипертонической болезнью
Об авторах
Н. А. КозиоловаРоссия
А. В. Бушмакина
Россия
Н. А. Ковалевская
Россия
И. М. Шатунова
Россия
Список литературы
1. Mancia G, Backer G, Dominiczak A et al. 2007 Guidelines for the Management of Arterial Hypertension. The Task Force for the Management of Arterial Hypertension of the European Society of Hypertension (ESH) and of the European Society of Cardiology (ESC). J Hypertension 2007; 25: 1105-87.
2. Cotter J, Oliveira P, Cunha P, Polónia J. Different patterns of one-year evolution of microalbuminuria in hypertensive patients treated with different inhibitors of the renin-angiotensin system. Rev Port Cardiol 2008; 27 (11): 1395-404.
3. Brouwers FP, Asselbergs FW, Hillege HL et al. Long-term effects of fosinopril and pravastatin on cardiovascular events in subjects with microalbuminuria: Ten years of follow-up of Prevention of Renal and Vascular End-stage Disease Intervention Trial (PREVEND IT). Am Heart J 2011; 161 (6): 1171-8.
4. Ari E, Kaya Y, Demir H et al. Oxidative DNA damage correlates with carotid artery atherosclerosis in hemodialysis patients. Hemodial Int 2011; 15 (4): 453-9.
5. Dormán G, Cseh S, Hajdú I et al. Matrix metalloproteinase inhibitors: a critical appraisal of design principles and proposed therapeutic utility. Drugs 2010; 70 (8): 949-64.
6. Bauvois B. New facets of matrix metalloproteinases MMP-2 and MMP-9 as cell surface transducers: Outside-in signaling and relationship to tumor progression. Biochim Biophys Acta 2012; 1825 (1): 29-36.
7. Romi F, Helgeland G, Gilhus NE. Serum Levels of Matrix Metalloproteinases: Implications in Clinical Neurology. Eur Neurol 2012; 67 (2): 121-8.
8. Saglam F, Celik A, Tayfur D et al. Decrease in cell proliferation by an matrix metalloproteinase inhibitor, doxycycline, in a model of immune-complex nephritis. Nephrology (Carlton) 2010; 15 (5): 560-7.
9. Chung AW, Yang HH, Kim JM et al. Upregulation of matrix metalloproteinase-2 in the arterial vasculature contributes to stiffening and vasomotor dysfunction in patients with chronic kidney disease. Circulation 2009; 120 (9): 792-801.
10. Fang JH, Zhou HC, Zeng C et al. MicroRNA-29b suppresses tumor angiogenesis, invasion, and metastasis by regulating matrix metalloproteinase 2 expression. Hepatology 2011; 54 (5): 1729-40.
11. Lantelme P. Blood pressure control: time for action. Arch Cardiovasc Dis 2009; 102 (6-7): 465-7.
12. Bramlage P, Hasford J. Blood pressure reduction, persistence and costs in the evaluation of antihypertensive drug treatment - a review. Cardiovasc Diabetol 2009; 27: 8-18.
13. Erdine S. Compliance with the treatment of hypertension: the potential of combination therapy. J Clin Hypertens (Greenwich) 2010; 12 (1): 40-6.
14. Nicodème R, Albessard A, Amar J et al. Poor blood pressure control in general practice: in search of explanations. Arch Cardiovasc Dis 2009; 102 (6-7): 477-83.
15. Chobanian AV, Bakris GL, Black HR et al. Joint National Committee on Prevention, Detection, Evaluation, and Treatment of High Blood Pressure. National Heart, Lung, and Blood Institute; National High Blood Pressure Education Program Coordinating Committee. Seventh report of the Joint National Committee on Prevention, Detection, Evaluation, and Treatment of High Blood Pressure. Hypertension 2003; 42: 1206-52.
16. Pool JL, Glazer R, Crikelair N et al. The role of baseline blood pressure in guiding treatment choice: a secondary analysis of the use of valsartan/hydrochlorothiazide as initial therapy in hypertensive adults in a randomized, double-blind, placebo-controlled trial. Clin Drug Investig 2009; 29 (12): 791-802.
17. Philipp T, Glazer RD, Wernsing M et al. Initial combination therapy with amlodipine/valsartan compared with monotherapy in the treatment of hypertension. J Am Soc Hypertens 2011.
18. Ueng KC, Lin LC, Voon WC et al. An eight-week, multicenter, randomized, double-blind study to evaluate the efficacy and tolerability of fixed-dose amlodipine/benazepril combination in comparison with amlodipine as first-line therapy in chinese patients with mild to moderate hypertension. Blood Press 2008; 1: 24-31.
19. Julius S, Kjeldsen SE, Weber M et al. Outcomes in hypertensive patients at high cardiovascular risk treated with regimens based on valsartan or amlodipine: the VALUE randomised trial. Lancet 2004; 19: 2022-31.
20. Zidek W. Preventing end-organ damage in hypertension. What is the significance of the VALUE Study for general practice? MMW Fortschr Med 2004; 8: 27-8.
21. Dezii CM. A retrospective study of persistence with single-pill combination therapy vs concurrent two-pill therapy in patients with hypertension. Manag Care 2009; l: 2-6.
22. Düsing R. Optimizing blood pressure control through the use of fixed combinations. Vasc Health Risk Manag 2010; 25 (6): 321-5.
23. Slavachevsky I, Rachmani R, Levi Z et al. Effect of enalapril and nifedipine on orthostatic hypotension in older hypertensive patients. J Am Geriatr Soc 2000; 48 (7): 807-10.
24. Schrader J, Lüders S, Kulschewski A et al. Morbidity and Mortality After Stroke, Eprosartan Compared with Nitrendipine for Secondary Prevention: principal results of a prospective randomized controlled study (MOSES). Stroke 2005; 36 (6): 1218-26.
25. Lonn E, Shaikholeslami R, Yi Q et al. Effects of ramipril on left ventricular mass and function in cardiovascular patients with controlled blood pressure and with preserved left ventricular ejection fraction: a substudy of the Heart Outcomes Prevention Evaluation (HOPE) Trial. J Am Coll Cardiol 2004; 43: 2200-6.
26. Verdecchia P, Sleight P, Mancia G et al. Effects of telmisartan, ramipril, and their combination on left ventricular hypertrophy in individuals at high vascular risk in the Ongoing Telmisartan Alone and in Combination With Ramipril Global End Point Trial and the Telmisartan Randomized Assessment Study in ACE Intolerant Subjects With Cardiovascular Disease. Circulation 2009; 120: 1380-9.
27. Okin PM, Devereux RB, Jern S et al. Regression of electrocardiographic left ventricular hypertrophy by losartan versus atenolol: the Losartan Intervention for Endpoint reduction in Hypertension (LIFE) Study. Circulation 2003; 108: 684-90.
28. Milan A, Caserta MA, Avenatti E et al. Anti-hypertensive drugs and left ventricular hypertrophy: a clinical update. Intern Emerg Med 2010; 5 (6): 469-79.
29. Saglam M, Karakaya O, Esen AM et al. Contribution of plasma matrix metalloproteinases to development of left ventricular hypertrophy and diastolic dysfunction in hypertensive subjects. Tohoku J Exp Med 2006; 208 (2): 117-22.
30. Cornish TC, Bagnasco SM, Macgregor AM et al. Glomerular protein levels of matrix metalloproteinase-1 and tissue inhibitor of metalloproteinase-1 are lower in diabetic subjects. J Histochem Cytochem 2009; 57 (11): 995-1001.
31. Spiers JP, Kelso EJ, Siah WF et al. Alterations in vascular matrix metalloproteinase due to ageing and chronic hypertension: effects of endothelin receptor blockade. J Hypertens 2005; 23 (9): 1717-24.
32. Castro MM, Rizzi E, Prado CM et al. Imbalance between matrix metalloproteinases and tissue inhibitor of metalloproteinases in hypertensive vascular remodeling. Matrix Biol 2010; 29 (3): 194-201.
33. Lim CS, Shalhoub J, Gohel MS et al. Matrix metalloproteinases in vascular disease - a potential therapeutic target? Curr Vasc Pharmacol 2010; 8 (1): 75-85.
34. Kelly D, Squire IB, Khan SQ et al. Usefulness of plasma tissue inhibitors of metalloproteinases as markers of prognosis after acute myocardial infarction. Am J Cardiol 2010; 106 (4): 477-82.
35. Marçal DM, Rizzi E, Martins-Oliveira A et al. Comparative study on antioxidant effects and vascular matrix metalloproteinase-2 downregulation by dihydropyridines in renovascular hypertension. Naunyn Schmiedebergs Arch Pharmacol 2011; 383 (1): 35-44.
36. Cheng X, Zhou Q, Lin S, Wu R. Fosinopril and valsartan intervention in gene expression of Klotho, MMP-9, TIMP-1, and PAI-1 in the kidney of spontaneously hypertensive rats. Zhong Nan Da Xue Xue Bao Yi Xue Ban 2010; 35 (10): 1048-56.
37. Tayebjee MH, Nadar S, Blann AD et al. Matrix metalloproteinase-9 and tissue inhibitor of metalloproteinase-1 in hypertension and their relationship to cardiovascular risk and treatment: a substudy of the Anglo-Scandinavian Cardiac Outcomes Trial (ASCOT). Am J Hypertens 2004; 17 (9): 764-9.
38. Yamamoto D, Takai S. Pharmacological implications of MMP-9 inhibition by ACE inhibitors. Curr Med Chem 2009; 16 (11): 1349-54.
39. Cheng XW, Song H, Sasaki T et al. Angiotensin type 1 receptor blocker reduces intimal neovascularization and plaque growth in apolipoprotein E-deficient mice. Hypertension 2011; 57 (5): 981-9.
40. Onal IK, Altun B, Onal ED et al. Serum levels of MMP-9 and TIMP-1 in primary hypertension and effect of antihypertensive treatment. Eur J Intern Med 2009; 20 (4): 369-72.
41. Marchesi C, Dentali F, Nicolini E et al. Plasma levels of matrix metalloproteinases and their inhibitors in hypertension: a systematic review and meta-analysis. J Hypertens 2012; 30 (1): 3-16.
42. Vase H, Lauridsen TG, Graffe CC, Pedersen EB. The effect of eprosartan on reflex sympathetic activation in sodium restricted patients with essential hypertension. J Am Soc Hypertens 2011; 5 (5): 385-94.
43. Labiós M, Martínez M, Gabriel F et al. Effects of eprosartan on mitochondrial membrane potential and H2O2 levels in leucocytes in hypertension. J Hum Hypertens 2008; 22 (7): 493-500.
44. Ram CV. Angiotensin blockade with eprosartan: vascular and functional implications. Curr Med Res Opin 2007; 23 (5): 5-11.
Рецензия
Для цитирования:
Козиолова Н.А., Бушмакина А.В., Ковалевская Н.А., Шатунова И.М. Органопротективный эффект фиксированной комбинированной антигипертензивной терапии эпросартаном и гидрохлоротиазидом при субклиническом и клиническом поражении органов-мишеней у пациентов с гипертонической болезнью. Системные гипертензии. 2012;9(4):28-34.