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Published on: July 12, 2024
Future Perspectives for Management of Stage A Heart Failure
1Division of Cardiovascular Medicine, Department of Internal Medicine, Kobe University Graduate School of Medicine.
Insights
Early detection of subclinical left ventricular dysfunction in Stage A heart failure (HF) is crucial for preventing progression. Global longitudinal strain (GLS) by echocardiography shows promise in identifying these early changes.
Area of Science:
- Cardiology
- Cardiovascular Imaging
- Heart Failure Management
Background:
- Stage A heart failure (HF) patients lack symptoms but have comorbid conditions, posing a high risk for HF progression.
- Addressing Stage A HF is key for preventing overt HF (Stages C and D).
- Early identification of Stage A HF individuals aids in implementing effective HF prevention strategies.
Purpose of the Study:
- To review the significance of assessing subclinical left ventricular (LV) dysfunction in Stage A HF patients.
- To explore the potential of Global Longitudinal Strain (GLS) in preventing HF progression.
Main Methods:
- Review of current literature on subclinical LV dysfunction and HF progression.
- Focus on Global Longitudinal Strain (GLS) assessed by speckle-tracking echocardiography.
- Comparison of GLS with conventional echocardiographic indices.
Main Results:
- Global Longitudinal Strain (GLS) is a sensitive marker for early, subtle LV myocardial abnormalities.
- GLS is superior to conventional echocardiographic indices in predicting outcomes.
- GLS assessment is crucial for identifying subclinical LV dysfunction in Stage A HF.
Conclusions:
- Early detection of subclinical LV dysfunction in Stage A HF is essential for delaying progression.
- GLS assessment offers a valuable tool for identifying patients at risk and guiding preventative strategies.
- Managing Stage A and B HF patients proactively can prevent the development of overt HF.
Abstract:
Patients with Stage A heart failure (HF) show no HF symptoms but have related comorbid diseases with a high risk of progressing to HF. Screening for comorbid diseases warrants closer attention because of the growing interest in addressing Stage A HF as the best means of preventing eventual progression to overt HF such as Stages C and D. The identification of individuals of Stage A HF is potentially useful for the implementation of HF-prevention strategies; however, not all Stage A HF patients develop left ventricular (LV) structural heart disease or symptomatic HF, which lead to advanced HF stages. Therefore, Stage A HF requires management with the long-term goal of avoiding HF development; likewise, Stage B HF patients are ideal targets for HF prevention. Although the early detection of subclinical LV dysfunction is, thus, essential for delaying the progression to HF, the assessment of subclinical LV dysfunction can be challenging. Global longitudinal strain (GLS) as assessed by speckle-tracking echocardiography has recently been reported to be a sensitive marker of early subtle LV myocardial abnormalities, helpful for the prediction of the outcomes for various cardiac diseases, and superior to conventional echocardiographic indices. GLS reflects LV longitudinal myocardial systolic function, and can be assessed usually by means of two-dimensional speckle-tracking. This article reviews the importance of the assessment of subclinical LV dysfunction in Stage A HF patients by means of GLS, and its current potential to prevent progression to later stage HF.
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