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April 18, 2006Circulation662 citationsOpen Access

Myocardial Structure and Function Differ in Systolic and Diastolic Heart Failure

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LHLoek van HeerebeekABAttila BorbélyHNHans W.M. Niessen

Key Points

  • This research aims to identify differences in myocardial structure and function between systolic and diastolic heart failure.
  • Patients hospitalized for exacerbated heart failure were classified as systolic (n=22) or diastolic (n=22) heart failure.

Structured PICO

Does myocardial structure and function differ in patients with systolic versus diastolic heart failure?

P
Population
44 patients hospitalized for worsening heart failure, classified as having systolic heart failure (SHF, n=22; LVEF 34+/-2%) or diastolic heart failure (DHF, n=22; LVEF 62+/-2%), with no coronary artery disease or biopsy evidence of infiltrative or inflammatory myocardial disease.
I
Intervention
LV endomyocardial biopsy with histomorphometry, electron microscopy, and single cardiomyocyte mechanics analysis
C
Comparator
Comparison between systolic heart failure (SHF) and diastolic heart failure (DHF) patients
O
Outcome
Differences in LV myocardial structure (cardiomyocyte diameter, collagen volume fraction, myofibrillar density) and function (passive force, total force)surrogate

LV myocardial structure and function differ significantly between systolic and diastolic heart failure due to distinct cardiomyocyte abnormalities, supporting their clinical separation.

Abstract

BACKGROUND: To support the clinical distinction between systolic heart failure (SHF) and diastolic heart failure (DHF), left ventricular (LV) myocardial structure and function were compared in LV endomyocardial biopsy samples of patients with systolic and diastolic heart failure. METHODS AND RESULTS: Patients hospitalized for worsening heart failure were classified as having SHF (n=22; LV ejection fraction (EF) 34+/-2%) or DHF (n=22; LVEF 62+/-2%). No patient had coronary artery disease or biopsy evidence of infiltrative or inflammatory myocardial disease. More DHF patients had a history of arterial hypertension and were obese. Biopsy samples were analyzed with histomorphometry and electron microscopy. Single cardiomyocytes were isolated from the samples, stretched to a sarcomere length of 2.2 microm to measure passive force (Fpassive), and activated with calcium-containing solutions to measure total force. Cardiomyocyte diameter was higher in DHF (20.3+/-0.6 versus 15.1+/-0.4 microm, P<0.001), but collagen volume fraction was equally elevated. Myofibrillar density was lower in SHF (36+/-2% versus 46+/-2%, P<0.001). Cardiomyocytes of DHF patients had higher Fpassive (7.1+/-0.6 versus 5.3+/-0.3 kN/m2; P<0.01), but their total force was comparable. After administration of protein kinase A to the cardiomyocytes, the drop in Fpassive was larger (P<0.01) in DHF than in SHF. CONCLUSIONS: LV myocardial structure and function differ in SHF and DHF because of distinct cardiomyocyte abnormalities. These findings support the clinical separation of heart failure patients into SHF and DHF phenotypes.

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Cite This Study

Heerebeek et al. (2006) studied this question.

synapsesocial.com/papers/6a01b25e897643a80dcb0028https://doi.org/10.1161/circulationaha.105.587519
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