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Updated: Jun 4, 2026

Evaluation of Cardiac Contractility Modulation Therapy in 2D Human Stem Cell-Derived Cardiomyocytes
Published on: December 16, 2022
A randomized controlled trial evaluating the safety and efficacy of cardiac contractility modulation in advanced
Alan Kadish1, Koonlawee Nademanee, Kent Volosin
1Northwestern University, Chicago IL, USA. a-kadish@northwestern.edu
Insights
Cardiac contractility modulation (CCM) did not improve the primary endpoint of ventilatory anaerobic threshold in heart failure patients. However, CCM did improve peak Vo₂ and quality of life, with no adverse safety impact.
Area of Science:
- Cardiology
- Medical Devices
- Heart Failure Management
Background:
- Cardiac contractility modulation (CCM) uses nonexcitatory electrical signals during the heart's absolute refractory period to enhance contraction.
- Heart failure (HF) remains a significant global health challenge, necessitating novel therapeutic approaches.
Purpose of the Study:
- To evaluate the efficacy and safety of CCM in patients with advanced heart failure (NYHA class III/IV, EF ≤ 35%).
- To assess CCM's impact on key functional and quality-of-life metrics in heart failure patients.
Main Methods:
- A randomized trial involving 428 heart failure patients assigned to optimal medical therapy (OMT) plus CCM or OMT alone.
- Primary efficacy endpoint was ventilatory anaerobic threshold (VAT) at 6 months; secondary endpoints included peak Vo₂ (pVo₂) and MLWHFQ.
- Primary safety endpoint assessed noninferiority for all-cause mortality and hospitalizations at 12 months.
Main Results:
- CCM did not significantly improve VAT compared to OMT alone.
- CCM significantly improved peak Vo₂ (pVo₂) and the Minnesota Living with Heart Failure Questionnaire (MLWHFQ) scores.
- The primary safety endpoint met noninferiority criteria, with no significant adverse effect on mortality or hospitalizations.
Conclusions:
- CCM therapy did not improve the primary efficacy endpoint (VAT) in the studied heart failure population.
- CCM demonstrated benefits in improving exercise capacity (pVo₂) and quality of life (MLWHFQ) without compromising safety.
- Further research is warranted to define CCM's specific role in managing medically refractory heart failure.
Background:
Cardiac contractility modulation (CCM) delivers nonexcitatory electrical signals to the heart during the absolute refractory period intended to improve contraction.
Methods:
We tested CCM in 428 New York Heart Association class III or IV, narrow QRS heart failure patients with ejection fraction (EF) ≤ 35% randomized to optimal medical therapy (OMT) plus CCM (n = 215) versus OMT alone (n = 213). Efficacy was assessed by ventilatory anaerobic threshold (VAT), primary end point, peak Vo₂ (pVo₂), and Minnesota Living with Heart Failure Questionnaire (MLWFQ) at 6 months. The primary safety end point was a test of noninferiority between groups at 12 months for the composite of all-cause mortality and hospitalizations (12.5% allowable delta).
Results:
The groups were comparable for age (58 ± 13 vs 59 ± 12 years), EF (26% ± 7% vs 26% ± 7%), pVo₂ (14.7 ± 2.9 vs 14.8 ± 3.2 mL kg⁻¹ min⁻¹), and other characteristics. While VAT did not improve at 6 months, CCM significantly improved pVo₂ and MLWHFQ (by 0.65 mL kg⁻¹ min⁻¹ [P = .024] and -9.7 points [P < .0001], respectively) over OMT. Forty-eight percent of OMT and 52% of CCM patients experienced a safety end point, which satisfied the noniferiority criterion (P = .03). Post hoc, hypothesis-generating analysis identified a subgroup (characterized by baseline EF ≥ 25% and New York Heart Association class III symptoms) in which all parameters were improved by CCM.
Conclusions:
In the overall target population, CCM did not improve VAT (the primary end point) but did improve pVo₂ and MLWHFQ. Cardiac contractility modulation did not have an adverse affect on hospitalizations or mortality within the prespecified boundaries. Further study is required to clarify the role of CCM as a treatment for medically refractory heart failure.
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