Congestive heart failure with preserved EF pharmacotherapy: Difference between revisions

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(/* 2013 ACCF/AHA Guideline for the Management of Heart Failure.{{cite journal |vauthors=Yancy CW, Jessup M, Bozkurt B, Butler J, Casey DE, Drazner MH, Fonarow GC, Geraci SA, Horwich T, Januzzi JL, Johnson MR, Kasper EK, Levy WC, Masoudi FA, McBride PE,...)
(/* 2017 ACC/AHA/HFSA Focused Update of the 2013 ACCF/AHA Guideline for the Management of Heart Failure/2013 ACCF/AHA Guideline for the Management of Heart Failure.{{cite journal |vauthors=Yancy CW, Jessup M, Bozkurt B, Butler J, Casey DE, Drazner MH, F...)
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| colspan="1" style="text-align:center; background:LightCoral"|[[ACC AHA guidelines classification scheme#Classification of Recommendations|Class III]] (No Benefit)
| colspan="1" style="text-align:center; background:LightCoral"|[[ACC AHA guidelines classification scheme#Classification of Recommendations|Class III]] (No Benefit)
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| bgcolor="LightCoral"|<nowiki>"</nowiki> Nutritional supplementation is not recommended in HFpEF''([[ACC AHA guidelines classification scheme#Level of Evidence|Level of Evidence: C]])''<nowiki>"</nowiki>
| bgcolor="LightCoral"|<nowiki>"</nowiki>'''1.''' Routine use of nitrates or phosphodiesterase-5 inhibitors to increase activity or QoL in patients with HFpEF is ineffective.<ref name="pmid23478662">{{cite journal |vauthors=Redfield MM, Chen HH, Borlaug BA, Semigran MJ, Lee KL, Lewis G, LeWinter MM, Rouleau JL, Bull DA, Mann DL, Deswal A, Stevenson LW, Givertz MM, Ofili EO, O'Connor CM, Felker GM, Goldsmith SR, Bart BA, McNulty SE, Ibarra JC, Lin G, Oh JK, Patel MR, Kim RJ, Tracy RP, Velazquez EJ, Anstrom KJ, Hernandez AF, Mascette AM, Braunwald E |title=Effect of phosphodiesterase-5 inhibition on exercise capacity and clinical status in heart failure with preserved ejection fraction: a randomized clinical trial |journal=JAMA |volume=309 |issue=12 |pages=1268–77 |year=2013 |pmid=23478662 |pmc=3835156 |doi=10.1001/jama.2013.2024 |url=}}</ref><ref name="pmid26549714">{{cite journal |vauthors=Redfield MM, Anstrom KJ, Levine JA, Koepp GA, Borlaug BA, Chen HH, LeWinter MM, Joseph SM, Shah SJ, Semigran MJ, Felker GM, Cole RT, Reeves GR, Tedford RJ, Tang WH, McNulty SE, Velazquez EJ, Shah MR, Braunwald E |title=Isosorbide Mononitrate in Heart Failure with Preserved Ejection Fraction |journal=N. Engl. J. Med. |volume=373 |issue=24 |pages=2314–24 |year=2015 |pmid=26549714 |pmc=4712067 |doi=10.1056/NEJMoa1510774 |url=}}</ref>''([[ACC AHA guidelines classification scheme#Level of Evidence|Level of Evidence: B-R]])''<nowiki>"</nowiki>
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| bgcolor="LightCoral"|<nowiki>"</nowiki>'''2.''' Routine use of nutritional supplements is not recommended for patients with HFpEF.''([[ACC AHA guidelines classification scheme#Level of Evidence|Level of Evidence: C]])''<nowiki>"</nowiki>
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Revision as of 19:04, 1 May 2017

Congestive Heart Failure Microchapters

Home

Patient Information

Overview

Historical Perspective

Classification

Pathophysiology

Systolic Dysfunction
Diastolic Dysfunction
HFpEF
HFrEF

Causes

Differentiating Congestive heart failure from other Diseases

Epidemiology and Demographics

Risk Factors

Screening

Natural History, Complications and Prognosis

Diagnosis

Clinical Assessment

History and Symptoms

Physical Examination

Laboratory Findings

Electrocardiogram

Chest X Ray

Cardiac MRI

Echocardiography

Exercise Stress Test

Myocardial Viability Studies

Cardiac Catheterization

Other Imaging Studies

Other Diagnostic Studies

Treatment

Invasive Hemodynamic Monitoring

Medical Therapy:

Summary
Acute Pharmacotherapy
Chronic Pharmacotherapy in HFpEF
Chronic Pharmacotherapy in HFrEF
Diuretics
ACE Inhibitors
Angiotensin receptor blockers
Aldosterone Antagonists
Beta Blockers
Ca Channel Blockers
Nitrates
Hydralazine
Positive Inotropics
Anticoagulants
Angiotensin Receptor-Neprilysin Inhibitor
Antiarrhythmic Drugs
Nutritional Supplements
Hormonal Therapies
Drugs to Avoid
Drug Interactions
Treatment of underlying causes
Associated conditions

Exercise Training

Surgical Therapy:

Biventricular Pacing or Cardiac Resynchronization Therapy (CRT)
Implantation of Intracardiac Defibrillator
Ultrafiltration
Cardiac Surgery
Left Ventricular Assist Devices (LVADs)
Cardiac Transplantation

ACC/AHA Guideline Recommendations

Initial and Serial Evaluation of the HF Patient
Hospitalized Patient
Patients With a Prior MI
Sudden Cardiac Death Prevention
Surgical/Percutaneous/Transcather Interventional Treatments of HF
Patients at high risk for developing heart failure (Stage A)
Patients with cardiac structural abnormalities or remodeling who have not developed heart failure symptoms (Stage B)
Patients with current or prior symptoms of heart failure (Stage C)
Patients with refractory end-stage heart failure (Stage D)
Coordinating Care for Patients With Chronic HF
Quality Metrics/Performance Measures

Implementation of Practice Guidelines

Congestive heart failure end-of-life considerations

Specific Groups:

Special Populations
Patients who have concomitant disorders
Obstructive Sleep Apnea in the Patient with CHF
NSTEMI with Heart Failure and Cardiogenic Shock

Congestive heart failure with preserved EF pharmacotherapy On the Web

Most recent articles

Most cited articles

Review articles

CME Programs

Powerpoint slides

Images

Ongoing Trials at Clinical Trials.gov

US National Guidelines Clearinghouse

NICE Guidance

FDA on Congestive heart failure with preserved EF pharmacotherapy

CDC on Congestive heart failure with preserved EF pharmacotherapy

Congestive heart failure with preserved EF pharmacotherapy in the news

Blogs on Congestive heart failure with preserved EF pharmacotherapy

Directions to Hospitals Treating Congestive heart failure with preserved EF pharmacotherapy

Risk calculators and risk factors for Congestive heart failure with preserved EF pharmacotherapy

Editor-In-Chief: C. Michael Gibson, M.S., M.D. [1];Associate Editor(s)-in-Chief: Seyedmahdi Pahlavani, M.D. [2]

Overview

Treatment of HFpEF is focused on treating underlying disease, such as hypertension, coronary artery disease and atrial fibrillation. Diuretics are the main stay of pharmacotherapy. Other effective measures to control HFpEF include exercise, weight control and lipid control.

HFpEF pharmacotherapy

Treatment for HFpEF is based on underlying associated conditions. These measure are mainly focused on:

It is recommended to maintain BP less than 150/90 mm Hg in persons who are 60 years of age or older in the general population and of less than 140/90 mm Hg in persons with kidney disease (estimated GFR<60 ml per minute per 1.73 m2 of body-surface area or >30 mg of albumin per gram of creatinine,regardless of diabetic status) and for persons with diabetes, regardless of age.[2]
  • Control of volume overload[3][4]
Diuretics must be used to relief symptoms of volume overload according to patients' weight, symptoms and electrolyte status. Also, sodium restriction may be helpful in patients who are prone to volume overload.[5]
Patients with Atrial fibrillation (AF) must be treated according to last guideline for rate control and anti coagulation but if the symptoms remained consider rhythm control.[7]

Medications

Aldosterone Antagonists

May lead to improvement in diastolic function and hypertrophy but not in clinical outcomes.[11][12]

Diuretics

Diuretics are useful to control volume overload and decrease the preload.[13]

Angiotensin receptor neprilysin inhibitors

They may improve symptoms and quality of life in HFpEF patients but clinical trials to evaluate their effectiveness are ongoing.[14][15][16]

ACE inhibitors

ACE inhibitors do not have direct effect on mortality and morbidity in HFpEF but they have great role on hypertension, renal function, CAD and diabetes as underlying disease.[17][18]

Angiotensin II receptor blockers

There is no evidence that they improve morbidity or mortality in HFpEF patients.[18]

β-blockers

β-blockers have not shown benefits in HFpEF.[19][20]

2017 ACC/AHA/HFSA Focused Update of the 2013 ACCF/AHA Guideline for the Management of Heart Failure/2013 ACCF/AHA Guideline for the Management of Heart Failure.[21] (DO NOT EDIT)

Class I
"1. Systolic and diastolic blood pressure should be controlled according to published guidelines.[22][23](Level of Evidence: B)"
"2. Diuretics should be used for relief of symptoms due to volume overload.(Level of Evidence: C)"
Class III (No Benefit)
"1. Routine use of nitrates or phosphodiesterase-5 inhibitors to increase activity or QoL in patients with HFpEF is ineffective.[24][25](Level of Evidence: B-R)"
"2. Routine use of nutritional supplements is not recommended for patients with HFpEF.(Level of Evidence: C)"
Class IIa
"1. Coronary revascularization for patients with CAD in whom angina or demonstrable myocardial ischemia is present despite medical therapy (Level of Evidence: C)"
"2. Management of atrial fibrillation according to published guidelines in patients with HFpEF is reasonable to improve symptomatic HF (Level of Evidence: C)"
"3. Use of β-blockers, ACE inhibitors, and ARBs for hypertension in patients with HFpEF. (Level of Evidence: C)"
Class IIb
"1.ARBs might be considered to decrease hospitalizations for patients with HFpEF.[18] (Level of Evidence: B)"
"2.In appropriately selected patients with HFpEF (with EF ≥45%, elevated BNP levels or HF admission within 1 year, estimated glomerular filtration rate >30 mL/min, creatinine <2.5 mg/dL, potassium <5.0 mEq/L), aldosterone receptor antagonists might be considered to decrease hospitalizations.[26][27] (Level of Evidence: B-R)"

References

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  2. Reisin E, Harris RC, Rahman M (2014). "Commentary on the 2014 BP guidelines from the panel appointed to the Eighth Joint National Committee (JNC 8)". J. Am. Soc. Nephrol. 25 (11): 2419–24. doi:10.1681/ASN.2014040371. PMC 4214539. PMID 25114277.
  3. Takei M, Kohsaka S, Shiraishi Y, Goda A, Izumi Y, Yagawa M, Mizuno A, Sawano M, Inohara T, Kohno T, Fukuda K, Yoshikawa T (2015). "Effect of estimated plasma volume reduction on renal function for acute heart failure differs between patients with preserved and reduced ejection fraction". Circ Heart Fail. 8 (3): 527–32. doi:10.1161/CIRCHEARTFAILURE.114.001734. PMID 25737498.
  4. Felker GM, Lee KL, Bull DA, Redfield MM, Stevenson LW, Goldsmith SR, LeWinter MM, Deswal A, Rouleau JL, Ofili EO, Anstrom KJ, Hernandez AF, McNulty SE, Velazquez EJ, Kfoury AG, Chen HH, Givertz MM, Semigran MJ, Bart BA, Mascette AM, Braunwald E, O'Connor CM (2011). "Diuretic strategies in patients with acute decompensated heart failure". N. Engl. J. Med. 364 (9): 797–805. doi:10.1056/NEJMoa1005419. PMC 3412356. PMID 21366472.
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  10. Alehagen U, Benson L, Edner M, Dahlström U, Lund LH (2015). "Association Between Use of Statins and Mortality in Patients With Heart Failure and Ejection Fraction of ≥50". Circ Heart Fail. 8 (5): 862–70. doi:10.1161/CIRCHEARTFAILURE.115.002143. PMID 26243795.
  11. Edelmann F, Wachter R, Schmidt AG, Kraigher-Krainer E, Colantonio C, Kamke W, Duvinage A, Stahrenberg R, Durstewitz K, Löffler M, Düngen HD, Tschöpe C, Herrmann-Lingen C, Halle M, Hasenfuss G, Gelbrich G, Pieske B (2013). "Effect of spironolactone on diastolic function and exercise capacity in patients with heart failure with preserved ejection fraction: the Aldo-DHF randomized controlled trial". JAMA. 309 (8): 781–91. doi:10.1001/jama.2013.905. PMID 23443441.
  12. Pitt B, Pfeffer MA, Assmann SF, Boineau R, Anand IS, Claggett B, Clausell N, Desai AS, Diaz R, Fleg JL, Gordeev I, Harty B, Heitner JF, Kenwood CT, Lewis EF, O'Meara E, Probstfield JL, Shaburishvili T, Shah SJ, Solomon SD, Sweitzer NK, Yang S, McKinlay SM (2014). "Spironolactone for heart failure with preserved ejection fraction". N. Engl. J. Med. 370 (15): 1383–92. doi:10.1056/NEJMoa1313731. PMID 24716680.
  13. Butler J, Fonarow GC, Zile MR, Lam CS, Roessig L, Schelbert EB, Shah SJ, Ahmed A, Bonow RO, Cleland JG, Cody RJ, Chioncel O, Collins SP, Dunnmon P, Filippatos G, Lefkowitz MP, Marti CN, McMurray JJ, Misselwitz F, Nodari S, O'Connor C, Pfeffer MA, Pieske B, Pitt B, Rosano G, Sabbah HN, Senni M, Solomon SD, Stockbridge N, Teerlink JR, Georgiopoulou VV, Gheorghiade M (2014). "Developing therapies for heart failure with preserved ejection fraction: current state and future directions". JACC Heart Fail. 2 (2): 97–112. doi:10.1016/j.jchf.2013.10.006. PMC 4028447. PMID 24720916.
  14. Macdonald PS (2015). "Combined angiotensin receptor/neprilysin inhibitors: a review of the new paradigm in the management of chronic heart failure". Clin Ther. 37 (10): 2199–205. doi:10.1016/j.clinthera.2015.08.013. PMID 26386501.
  15. Hubers SA, Brown NJ (2016). "Combined Angiotensin Receptor Antagonism and Neprilysin Inhibition". Circulation. 133 (11): 1115–24. doi:10.1161/CIRCULATIONAHA.115.018622. PMID 26976916.
  16. Prenner SB, Shah SJ, Yancy CW (2016). "Role of Angiotensin Receptor-Neprilysin Inhibition in Heart Failure". Curr Atheroscler Rep. 18 (8): 48. doi:10.1007/s11883-016-0603-4. PMID 27324636.
  17. Yip GW, Wang M, Wang T, Chan S, Fung JW, Yeung L, Yip T, Lau ST, Lau CP, Tang MO, Yu CM, Sanderson JE (2008). "The Hong Kong diastolic heart failure study: a randomised controlled trial of diuretics, irbesartan and ramipril on quality of life, exercise capacity, left ventricular global and regional function in heart failure with a normal ejection fraction". Heart. 94 (5): 573–80. doi:10.1136/hrt.2007.117978. PMID 18208835.
  18. 18.0 18.1 18.2 Yusuf S, Pfeffer MA, Swedberg K, Granger CB, Held P, McMurray JJ, Michelson EL, Olofsson B, Ostergren J (2003). "Effects of candesartan in patients with chronic heart failure and preserved left-ventricular ejection fraction: the CHARM-Preserved Trial". Lancet. 362 (9386): 777–81. doi:10.1016/S0140-6736(03)14285-7. PMID 13678871.
  19. Yamamoto K, Origasa H, Hori M (2013). "Effects of carvedilol on heart failure with preserved ejection fraction: the Japanese Diastolic Heart Failure Study (J-DHF)". Eur. J. Heart Fail. 15 (1): 110–8. doi:10.1093/eurjhf/hfs141. PMID 22983988.
  20. Conraads VM, Metra M, Kamp O, De Keulenaer GW, Pieske B, Zamorano J, Vardas PE, Böhm M, Dei Cas L (2012). "Effects of the long-term administration of nebivolol on the clinical symptoms, exercise capacity, and left ventricular function of patients with diastolic dysfunction: results of the ELANDD study". Eur. J. Heart Fail. 14 (2): 219–25. doi:10.1093/eurjhf/hfr161. PMID 22147202.
  21. Yancy CW, Jessup M, Bozkurt B, Butler J, Casey DE, Drazner MH, Fonarow GC, Geraci SA, Horwich T, Januzzi JL, Johnson MR, Kasper EK, Levy WC, Masoudi FA, McBride PE, McMurray JJ, Mitchell JE, Peterson PN, Riegel B, Sam F, Stevenson LW, Tang WH, Tsai EJ, Wilkoff BL (2013). "2013 ACCF/AHA guideline for the management of heart failure: executive summary: a report of the American College of Cardiology Foundation/American Heart Association Task Force on practice guidelines". Circulation. 128 (16): 1810–52. doi:10.1161/CIR.0b013e31829e8807. PMID 23741057.
  22. Chobanian AV, Bakris GL, Black HR, Cushman WC, Green LA, Izzo JL, Jones DW, Materson BJ, Oparil S, Wright JT, Roccella EJ (2003). "Seventh report of the Joint National Committee on Prevention, Detection, Evaluation, and Treatment of High Blood Pressure". Hypertension. 42 (6): 1206–52. doi:10.1161/01.HYP.0000107251.49515.c2. PMID 14656957.
  23. Levy D, Larson MG, Vasan RS, Kannel WB, Ho KK (1996). "The progression from hypertension to congestive heart failure". JAMA. 275 (20): 1557–62. PMID 8622246.
  24. Redfield MM, Chen HH, Borlaug BA, Semigran MJ, Lee KL, Lewis G, LeWinter MM, Rouleau JL, Bull DA, Mann DL, Deswal A, Stevenson LW, Givertz MM, Ofili EO, O'Connor CM, Felker GM, Goldsmith SR, Bart BA, McNulty SE, Ibarra JC, Lin G, Oh JK, Patel MR, Kim RJ, Tracy RP, Velazquez EJ, Anstrom KJ, Hernandez AF, Mascette AM, Braunwald E (2013). "Effect of phosphodiesterase-5 inhibition on exercise capacity and clinical status in heart failure with preserved ejection fraction: a randomized clinical trial". JAMA. 309 (12): 1268–77. doi:10.1001/jama.2013.2024. PMC 3835156. PMID 23478662.
  25. Redfield MM, Anstrom KJ, Levine JA, Koepp GA, Borlaug BA, Chen HH, LeWinter MM, Joseph SM, Shah SJ, Semigran MJ, Felker GM, Cole RT, Reeves GR, Tedford RJ, Tang WH, McNulty SE, Velazquez EJ, Shah MR, Braunwald E (2015). "Isosorbide Mononitrate in Heart Failure with Preserved Ejection Fraction". N. Engl. J. Med. 373 (24): 2314–24. doi:10.1056/NEJMoa1510774. PMC 4712067. PMID 26549714.
  26. Cheng ML, Wang CH, Shiao MS, Liu MH, Huang YY, Huang CY, Mao CT, Lin JF, Ho HY, Yang NI (2015). "Metabolic disturbances identified in plasma are associated with outcomes in patients with heart failure: diagnostic and prognostic value of metabolomics". J. Am. Coll. Cardiol. 65 (15): 1509–20. doi:10.1016/j.jacc.2015.02.018. PMID 25881932.
  27. Morawietz H, Bornstein SR (2014). "Spironolactone for heart failure with preserved ejection fraction". N. Engl. J. Med. 371 (2): 181. doi:10.1056/NEJMc1405715#SA4. PMID 25006730.


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