Systolic heart failure and cardiac resynchronization therapy: a focus on diastole
Emanuela Facchini1, Marco Varalda, Chiara Sartori
1Clinical Cardiology, Department of Translational Medicine, Azienda Ospedaliero Universitaria "Maggiore della Carità", Università del Piemonte Orientale, Corso Mazzini 18, 28100, Novara, Italy.
Insights
Cardiac resynchronization therapy (CRT) improves ventricular filling and reverse remodeling in heart failure patients. Diastolic function changes, not systolic, predict long-term clinical outcomes, highlighting the importance of diastolic improvements post-CRT.
Area of Science:
- Cardiology
- Heart Failure Management
- Diastolic Function Assessment
Background:
- Conflicting data exist regarding the impact of cardiac resynchronization therapy (CRT) on diastolic function (DF) in patients with systolic heart failure.
- Understanding CRT's effects on DF is crucial for optimizing treatment strategies and predicting patient outcomes.
Purpose of the Study:
- To evaluate the effects of CRT on diastolic function in patients with systolic heart failure.
- To investigate the relationship between CRT-induced left ventricular changes and long-term clinical endpoints, including heart failure progression and cardiac death.
Main Methods:
- Echocardiography and clinical evaluations were performed on 119 CRT patients before and 4 months after therapy.
- Diastolic function was assessed using transmitral velocities (E/A, DT, E/DT), early diastolic mitral annular velocity (E'), E/E' ratio, and 2-D speckle tracking strain rate during isovolumetric relaxation (SRivr).
- Noninvasive assessment of end-diastolic pressure-volume relationship (EDPVR) and ventricular stiffness (Klv) was conducted.
Main Results:
- CRT improved New York Heart Association class and ventricular filling (E/DT).
- No significant changes were observed in relaxation (E', SRivr) or filling pressures (E/E', E/SRivr).
- CRT induced reverse remodeling, reducing end-diastolic volume (EDV) and end-systolic volume, leading to increased ejection fraction. Changes in diastolic parameters (ΔEDV20, ΔE/DT) correlated with increased risk of heart failure and/or cardiac death.
Conclusions:
- CRT improves ventricular filling and promotes reverse remodeling in systolic heart failure patients.
- Changes in diastolic function, particularly improvements in ventricular filling and reverse remodeling, are key predictors of long-term clinical prognosis post-CRT.
- Diastolic function modifications, rather than systolic improvements alone, are critical for predicting long-term outcomes in CRT recipients.
Abstract:
Conflicting data exist about the effects of cardiac resynchronization therapy (CRT) on diastolic function (DF). Aim of the study was to assess if and how CRT affects DF in systolic heart failure patients. We also investigated potential relations between CRT-induced left ventricular changes and the composite clinical endpoint of progressive heart failure and cardiac death over 3 years follow-up. 119 CRT patients underwent clinical evaluation and echocardiography before CRT and 4 months later. DF was quantified by transmitral velocities [E/A waves, deceleration time (DT), E/DT], early diastolic mitral annulus velocity (E'), E/E' ratio and 2-D speckle tracking strain rate during isovolumetric relaxation (IVR, SRivr). End-diastolic pressure-volume relationship (EDPVR) was also assessed noninvasively using a single-beat method. Overall stiffness was quantified by ventricular stiffness (Klv) normalized to end-diastolic volume (EDV). New York Heart Association class improved at 4 months (from 2.7 ± 0.7 to 1.9 ± 0.6, p < 0.001) as did ventricular filling (E/DT from 0.48 ± 0.29 to 0.39 ± 0.31 cm/s(2), p = 0.01). In contrast, relaxation (E', SRivr) and filling pressures (E/E', E/SRivr) did not change. Slope of EDPVR did not change with CRT. Such finding, together with an unmodified Klv/EDV and a 7 ± 18 % reduction in EDV (p = 0.001), suggested reverse remodelling towards a smaller equilibrium volume. Finally, end-systolic LV volume decreased from 147 ± 59 to 125 ± 52 ml and ejection fraction increased from 0.26 ± 0.07 to 0.32 ± 0.09 (both p < 0.001). Using a Cox regression model we found that only changes (Δ) in diastolic, but not systolic indexes, correlated with the composite clinical endpoint, with increments in ΔEDV20 and ΔE/DT, single or combined, greatly increasing risk of heart failure and/or cardiac death (p = 0.003). Ventricular reverse remodelling, together with improvement in ventricular filling, rather than improvements of systolic function, predict clinical prognosis long-term post-CRT.
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