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Right Ventricular-Pulmonary Artery Coupling as a Prognostic Marker in Cardiac Amyloidosis: A Comprehensive Review
Nikolaos Tsiamis1, Dimitrios Afendoulis2, Christos Tountas1
1Cardiology Department, Sismanogleio General Hospital, 15126 Athens, Greece.
Insights
Right ventricular-pulmonary artery (RV-PA) coupling is a key prognostic marker in cardiac amyloidosis (CA). Impaired RV-PA coupling, assessed by the TAPSE/PASP ratio, identifies high-risk patients and aids clinical decision-making.
Area of Science:
- Cardiology
- Cardiovascular Imaging
- Amyloidosis Research
Background:
- Cardiac amyloidosis (CA) causes heart failure due to myocardial infiltration.
- Left ventricular function traditionally guides prognosis, but right ventricular (RV) dysfunction and RV-pulmonary artery (PA) coupling are increasingly recognized as critical outcome determinants.
Purpose of the Study:
- To review current evidence on RV-PA coupling as a prognostic marker in CA.
- To examine measurement methods, prognostic significance, pathophysiology, and clinical applications of RV-PA coupling in CA.
Main Methods:
- Comprehensive literature review of studies (2020-2025) on RV-PA coupling in AL and ATTR cardiac amyloidosis.
- Analysis of multicenter cohorts, registries, and validation studies linking RV-PA coupling indices to clinical outcomes.
Main Results:
- RV-PA coupling, often measured by the TAPSE/PASP ratio, shows strong independent prognostic value for mortality and heart failure in CA patients.
- Impaired coupling (TAPSE/PASP < 0.45 mm/mmHg) identifies high-risk individuals, with hazard ratios for adverse outcomes ranging from 1.98 to 4.17.
- The TAPSE/PASP ratio provides incremental prognostic value over individual RV parameters by incorporating afterload, performing consistently across AL and ATTR subtypes.
Conclusions:
- RV-PA coupling is a robust, easily obtainable prognostic marker for CA risk stratification and clinical decisions.
- The TAPSE/PASP ratio is practical for routine echocardiographic assessment, offering significant prognostic information.
- Future research should standardize protocols, define thresholds, and integrate coupling assessment into CA management strategies.
Abstract:
Background: Cardiac amyloidosis (CA) is characterized by progressive myocardial infiltration leading to restrictive cardiomyopathy and heart failure. While left ventricular assessment has traditionally dominated prognostic evaluation, right ventricular (RV) dysfunction and RV-pulmonary artery (PA) coupling have emerged as critical determinants of outcomes. Objectives: This review synthesizes current evidence on RV-PA coupling as a prognostic marker in cardiac amyloidosis, examining measurement methodologies, prognostic significance, pathophysiological mechanisms, and clinical applications. Methods: We comprehensively reviewed the recent literature on RV-PA coupling in CA, focusing on studies published from 2020 to 2025, including both AL and ATTR subtypes. We analyzed data from multicenter cohorts, prospective registries, and validation studies examining the relationship between RV-PA coupling indices and clinical outcomes. Results: RV-PA coupling, most commonly assessed using the tricuspid annular plane systolic excursion to pulmonary artery systolic pressure (TAPSE/PASP) ratio, consistently demonstrates strong independent prognostic value for mortality and heart failure outcomes in CA patients. Impaired coupling (TAPSE/PASP < 0.45 mm/mmHg) identifies high-risk patients with hazard ratios ranging from 1.98 to 4.17 for adverse outcomes. In a multicenter cohort of 283 patients, TAPSE/PASP < 0.45 mm/mmHg was independently associated with death or heart failure hospitalization (HR 1.98, 95% CI 1.32-2.96, p = 0.001) and significantly improved risk reclassification (NRI 0.46-0.49). In ATTR-specific populations receiving disease-modifying therapy, impaired coupling (TAPSE/PASP ≤ 0.382 mm/mmHg) predicted three-year mortality with an adjusted HR of 2.99. The coupling index provides incremental value over individual RV parameters by accounting for afterload conditions and demonstrates consistent prognostic performance across both AL and ATTR subtypes. Conclusions: RV-PA coupling represents a robust, easily obtainable prognostic marker that should be routinely assessed in CA patients for risk stratification and clinical decision-making. The TAPSE/PASP ratio can be calculated from standard echocardiographic examinations without additional cost or time, making it practical for widespread implementation. Future research should focus on standardizing measurement protocols, establishing disease-specific thresholds, evaluating coupling trajectories with novel therapies, and integrating coupling assessment into staging systems and management algorithms. The strong prognostic signal, pathophysiological relevance, and ease of measurement position RV-PA coupling as an essential component of comprehensive cardiac amyloidosis evaluation.
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