Prognostic impacts of dynamic cardiac structural changes in heart failure patients with preserved left ventricular

Shinsuke Yamanaka1, Yasuhiko Sakata1,2, Kotaro Nochioka1,2

  • 1Department of Cardiovascular Medicine, Tohoku University Graduate School of Medicine, Sendai, Japan.

Insights

In heart failure with preserved ejection fraction (HFpEF), left ventricular (LV) structures change over time. Patients developing LV enlargement with hypertrophy face the worst prognosis.

Area of Science:

  • Cardiology
  • Cardiovascular Research
  • Heart Failure Research

Background:

  • Heart failure with preserved ejection fraction (HFpEF) affects millions globally.
  • Understanding the dynamic changes in left ventricular (LV) structures in HFpEF is crucial for prognosis.
  • Previous studies have focused on static LV parameters, overlooking temporal changes.

Purpose of the Study:

  • To investigate the temporal changes in left ventricular (LV) structures in patients with HFpEF.
  • To determine the prognostic impact of these dynamic LV structural changes.
  • To identify specific LV structural patterns associated with adverse outcomes in HFpEF.

Main Methods:

  • Analysis of the Chronic Heart Failure Analysis and Registry in the Tohoku District-2 (CHART-2) study data.
  • Categorization of 2698 HFpEF patients into three baseline LV structure groups: no LV hypertrophy/no LV enlargement, LV hypertrophy/no LV enlargement, and LV hypertrophy/LV enlargement.
  • Longitudinal assessment of LV structure changes over a median of 8.7 years, with a subset undergoing repeat echocardiography at 1 year.

Main Results:

  • A significant increase in the composite outcome of cardiovascular death or HF admission was observed with progression from no LVH/no LVE to LVH/LVE.
  • Substantial transitions in LV structure categories were noted within 1 year, indicating dynamic changes.
  • Patients transitioning to or remaining in the LVH/LVE group exhibited the worst prognosis (HR 4.65 and 4.01, respectively) compared to those with no LVH/no LVE, even after adjusting for LV ejection fraction.

Conclusions:

  • Left ventricular structures dynamically change over time in patients with HFpEF.
  • The development of LV enlargement combined with LV hypertrophy signifies the worst prognosis in HFpEF.
  • These findings highlight the importance of monitoring dynamic LV structural changes for risk stratification in HFpEF.
Abstract

Related Concept Videos

Heart Failure II: Pathophysiology01:29

Heart Failure II: Pathophysiology

Systolic Heart Failure and Compensatory MechanismsSystolic heart failure (also termed HFrEF, Heart Failure with Reduced Ejection Fraction) is the most prevalent type of heart filure. It results in a decreased volume of blood being pumped from the ventricle. The aortic arch and carotid sinuses have baroreceptors that detect reduced blood pressure, triggering the sympathetic nervous system (SNS) to release epinephrine and norepinephrine. Initially, this response aims to boost heart rate and...
573
Pathophysiology of Heart Failure01:17

Pathophysiology of Heart Failure

Heart failure (HF) is a progressive syndrome involving ventricles that leads to inadequate cardiac output. It can be classified based on location and output or ejection fraction. Ejection fraction (EF) is an essential measurement in the diagnosis and surveillance of HF. Reduced EF corresponds to systolic heart failure (HFrEF). However, HF with preserved ejection fraction (HFpEF) is becoming increasingly prevalent. Also known as diastolic HF, this form of HF is related to aging. The...
2.5K
Heart Failure IV: Classification and Diagnostic Evaluation01:30

Heart Failure IV: Classification and Diagnostic Evaluation

Heart failure can be classified in various ways, with the most common classifications based on physical activity limitations, disease progression, severity, and treatment strategies.The Functional Classification of Heart Failure divides patients into four categories based on physical activity limitation due to symptom burden.Class I: Patients in this class have cardiac disease but no physical activity limitations. Ordinary activities like walking, climbing stairs, or routine tasks do not cause...
205
Imbalances in Cardiac Output01:26

Imbalances in Cardiac Output

The heart's primary function is to pump blood throughout the body, maintaining a balance between blood sent out (cardiac output) and blood returning (venous return). If this balance is disrupted, it can result in congestive heart failure (CHF), a severe condition where the heart becomes an inefficient pump, leading to inadequate blood circulation.
CHF can occur due to the failure of either side of the heart. Left-side failure leads to pulmonary congestion—the right side continues to send...
2.1K
Cardiomyopathy II: Dilated Cardiomyopathy01:30

Cardiomyopathy II: Dilated Cardiomyopathy

Dilated cardiomyopathy, or DCM, is a progressive myocardial disorder characterized by ventricular chamber dilation and contractile dysfunction.EtiologyVarious factors can cause DCM, including hypertension and heavy alcohol intake, which contribute to the weakening and enlargement of the heart muscle. Viral infections, such as Coxsackievirus B, adenoviruses, and influenza, can lead to DCM by causing inflammation and damage to heart tissue. Certain chemotherapeutic agents, including daunorubicin,...
317
Heart Failure I: Introduction01:27

Heart Failure I: Introduction

Heart failure refers to a clinical syndrome caused by structural or functional cardiac disorders that prevent the heart from pumping an adequate amount of blood to meet the body's metabolic needs. This condition often arises from myocardial infarction or ischemia, leading to decreased cardiac output, reduced tissue perfusion, impaired gas exchange, fluid volume imbalance, and decreased functional ability.Heart failure can result from disruptions in the mechanisms that regulate cardiac output...
603