INTRODUCTION:Heart failure with reduced ejection fraction (HFrEF) accompanied by moderate or severe ventricular tricuspid-valve leaflet regurgitation (vTR2/3) is prognostically unfavourable; however, the underlying pathophysiology has not yet been sufficiently clarified. The hypothesis of a causative role of left ventricular (LV) dysfunction +/- secondary mitral regurgitation (sMR) on the extent and severity of secondary vTR was investigated. METHODS:We integrated right ventricular (RV) pressure-volume loop and Swan-Ganz catheter data with RV/LV imaging findings in a retrospective analysis of 134 HFrEF patients. RESULTS:Parameters independently associated with the presence of vTR2/3 were (i) presence of sMR (adjusted odds-ratio [aOR] = 1.67, P = .045), (ii) increased pulmonary vascular pulsatile RV loads (lower pulmonary artery [PA] compliance, aOR = 0.43, P = .021; area under the curve [AUC] = 0.82, cut-off <2.24 ml/mmHg, P < .001), mainly due to concomitant moderate/severe sMR (sMR2/3) (aOR = 4.56, P = .012), and (iii) progressive uncoupling of RV elastance/contractility (Ees) to an increasing total afterload (pulmonary elastance, Ea) (Ees/Ea ratio: aOR = 0.024, P = .005; AUC = 0.84, cut-off <0.6, P < .001). In addition, the RV-PA uncoupling was not only determined by the higher afterload in vTR2/3, but was also observed across the entire total afterload range (Ea tertile). This resulted in a larger and more dysfunctional RV in vTR2/3 compared with vTR0/1, independent of the afterload. RV-PA uncoupling and reduced PA compliance were independently associated with all-cause mortality. CONCLUSION:The vTR2/3 in context of HFrEF was independently associated with the presence of sMR, increased pulsatile loads, and a pronounced RV-PA uncoupling over almost the entire afterload range. Future studies will need to determine under which haemodynamic conditions a mechanical tricuspid regurgitation reduction in HFrEF patients is advisable.
Abstract Background Transcatheter-edge-to-edge-repair (TEER) of functional mitral regurgitation (FMR) reduces rehospitalisation and all-cause mortality in patients with HFrEF/HFmrEF. Not conclusively clarified is the interaction of pre-interventional intrinsic left ventricular (LV) function with TEER success and clinical outcome. By using the gold standard of LV contractility analysis, the invasive pressure-volume loop technique, we examined the interaction of pre-and post-interventional intrinsic LV performance with the degree of MR reduction and all-cause mortality after TEER in patients with advanced HFrEF. Methods In a prospective study of 71 patients with advanced HFrEF (median EF 26%, 22-31%) and severe FMR, we quantified different intrinsic parameters of LV performance by PV-loop analysis (single beat analysis) pre-and post-interventionally. Results In 83% of the patients a MR reduction to grad < 2 could be achieved (hospital discharge). In the ROC analysis, the best cut-off to separate medium-term survival from all-cause mortality (median FU 2.9 years) was a post-interventional regurgitation fraction (RF) < 20% (AUC 0.72, p<0.001, sensitivity 83%, specificity 60%) and a R-volume (RV) < 18ml (AUC 0,7, p=0.002, sensitivity 67%, specificity 72%). The PV-loop-derived intrinsic LV contractility (LV-endsystolic elastance, Ees), LV afterload (arterial elastance, Ea), LV-Ao-coupling (Ees/Ea), LV-mechanical efficacy (ME), PV-loop area (PVA), stroke work, Tau; end-diastolic elastance (Eed), LVEF, LVEDV, and LVESV, pre- and post-TEER, were not predictive for the extent of MR reduction acutely, after 6 months FU, and for all-cause mortality. In multivariate cox-regression analysis, only a post-interventional RF<20% (HR 0.36, p=0.017) or RV<18ml (HR 0.32, p=0.005) and the pre-interventional LV-contractile reserve (LV-CR: post-extra-systolic augmentation of LV-Ees) remained independent predictors of all-cause mortality. In a second model, we included the degree of LV-remodeling (LV-R: LVESV reduction from hospital discharge to 6 months) in the model. In addition to pre-interventional LV-CR, and RF<20%, the LV-R remains independent predictive for all-cause mortality. Conclusion In our peri-mitral-TEER LV-PV-loop study, only the extent of MR reduction and the pre-interventional LV-CR, but not the intrinsic LV performance at rest, determine the medium-term survival of patients with advanced HFrEF and FMR. TEER-mediated MR reduction itself seems not be determined by the LV performance.
Abstract Background A reliable evaluation of right ventricular (RV) function in the presence of moderate-to-severe tricuspid regurgitation (m/s-TR) is of paramount importance for surgical or interventional risk stratification. Due to the significant systolic regurgitation of blood from the RV to the low-pressure right atrium, conventional echocardiographic parameters could appear normal and thus overestimate RV function (pseudo-normal). The aim of this study was to analyse and compare RV function in trace TR versus m/s-TR by the invasive pressure-volume-loop (PV-loop) technique, the gold standard of RV function analysis, with conventional echocardiographic indices in patients with the ventricular form of mild/no vs. m/s-TR. Methods The study was conducted in 134 patients with HFrEF in a post-hoc analysis (110 from the Magdeburg CRT Responder Trial, and 24 from a local CRT-optimization trial). Results The logistic regression analysis demonstrated that RV size (RV-end-diastolic volume, RVEDV) and RV function (measured as RV fractional area change, FAC), TAPSE, and lower fractional shortening (FS) of proximal the RV-outflow tract (RVOTprox) was closely associated with PV-loop-derived RV total afterload (pulmonary arterial elastance, Ea) and coupling of RV contractility (end-systolic RV elastance, Ees) to Ea (Ees/Ea) (all, p<0.001). Compared to trace TR (n=98, 73%), m/s-TR (n=36, 27%) was accompanied with significant higher total afterloads (Ea: 0.75 vs.0.41, p<0.001) and lower RV-PA coupling ratios (Ees/Ea, 0.4 vs. 0.79, p<0.001). This was associated with enlarged RVs (RVEDV: 210ml vs. 166ml), lower FAC (31% vs. 50%), TAPSE (13mm vs. 18mm), and RVOTprox (22% vs. 39%) (all p<0.001). For better comparability between trace TR and m/s-TR tertiles (T1-T3) of similar afterloads (Ea) were formed. The m/s-TR patients showed significant lower RV-PA coupling ratios than trace TR at the lower two Ea tertiles T1 (p=0.034) and T2 (p<0.001). At Ea T3 the difference was no longer significant (p=0.055). The hemodynamic data are mirrored by significant lower FACs, FS RVOTprox, and TAPSE at T1 and T2 (all p<0.05), and a nonsignificant difference at T3 in m/s-TR. In conclusion: In our cohort of HFrEF patients, echocardiographic RV function reflects very closely the hemodynamic coupling efficiency of RV contractility (Ees) to afterload (Ea) and seems independent from the extent of TR. We found no evidence for pseudo-normal or overestimated echocardiographic RV function in m/s-TR.
Abstract Background and purpose The gold-standard method to evaluate right ventricular (RV) function in pulmonary hypertension (PH) relies on invasive pressure-volume loop (PV-loop) measurement of RV-pulmonary artery (PA) coupling defined as the ratio of end-systolic RV elastance to pulmonary arterial elastance (Ees/Ea). The normal RV PV-loop has a triangular shape with a peaking early systolic pressure (early-SP). With progression of PH the PV-loop changes from trapezoid to a rectangular and ultimately to a trapezoid shape. Along with these geometric changes, the ratio between early-SP and end-systolic pressure (ESP) decreases from >1 to <1 with a late systolic peaking of RV pressure. How all these changes relate to RV afterload, RV-PA coupling, non-invasive RV function, and prognosis in PH due to left heart disease is incomplete understood. Methods We analyzed and categorized the conductance catheter-derived single-beat RV PV-loops in 133 patients with HFREF (110 patients: a post-hoc analysis of the Magdeburg CRT Responder Trial, 23 from a local PV-L-derived CRT-optimization trial) according their shape (triangular, rectangular, trapezoid), and determined the early-SP/ESP ratio. Results Using multivariate linear regression analysis (adjusted for afterload parameter PVR, PA-compliance, PCWP, PAmean), only PCWP (beta=−0.17) and PA-compliance (beta=0.61) remained significant determinants of the early-SP/ESP ratio and PV-loop shape. In turn, early-SP/ESP ratio seems to be an important determinant of RV-PA coupling efficiency (Ees/Ea) of the RV to afterload (r=0.8, p<0.001). The association between early-SP/ESP ratio and Ees/Ea ratio was closer than Ees/Ea ratio to the other afterload parameters Ea (r=−0.7), PVR (r=−0.41), and PA-compliance (r=0.62). Furthermore, the early-SP/ESP ratio was significantly associated with parameters of non-invasive RV function such as TAPSE (r=0.67), FAC (r=0.76), RVEF (r=0.7), and the non-invasive RV-PA coupling parameter TAPSE/PASP (r=0.8) (all p<0.001). In cox regression analysis, the early-SP/ESP ratio was a strong indicator for long-term survival (median FU 4.2 years) (OR 0.025, CI 95% 0.007–0.09). Simple categorization of the RV PV-loop shapes into “triangular” (early-SP/ESP ratio >1.1, mean survival 7.7 years), “rectangular” (0.9–1.1, 6.4 years) and “trapezoid” (<0.9, 3.2 years) clearly differentiated long-term survival of HFREF patients (log rank, Chi square 50.1, p<0.001). Conclusion The early-SP/ESP ratio determines the shape of RV-PV-loops and is closely associated with predominately pulsatile PA load, RV-PA coupling capacity, RV function, and long-term prognosis of patients with HFREF. Funding Acknowledgement Type of funding sources: Private company. Main funding source(s): Boston Scientific
Abstract Aims Failure of right ventricular (RV) function worsens outcome in pulmonary hypertension (PH). The adaptation of RV contractility to afterload, the RV‐pulmonary artery (PA) coupling, is defined by the ratio of RV end‐systolic to PA elastances (Ees/Ea). Using pressure–volume loop (PV‐L) technique we aimed to identify an Ees/Ea cut‐off predictive for overall survival and to assess hemodynamic and morphologic conditions for adapted RV function in secondary PH due to heart failure with reduced ejection fraction (HFREF). Methods and results This post hoc analysis is based on 112 patients of the prospective Magdeburger Resynchronization Responder Trial. All patients underwent right and left heart echocardiography and a baseline PV‐L and RV catheter measurement. A subgroup of patients (n = 50) without a pre‐implanted cardiac device underwent magnetic resonance imaging at baseline. The analysis revealed that 0.68 is an optimal Ees/Ea cut‐off (area under the curve: 0.697, P < 0.001) predictive for overall survival (median follow up = 4.7 years, Ees/Ea ≥ 0.68 vs. <0.68, log‐rank 8.9, P = 0.003). In patients with PH (n = 76, 68%) multivariate Cox regression demonstrated the independent prognostic value of RV‐Ees/Ea in PH patients (hazard ratio 0.2, P < 0.038). Patients without PH (n = 36, 32%) and those with PH but RV‐Ees/Ea ≥ 0.68 showed comparable RV‐Ees/Ea ratios (0.88 vs. 0.9, P = 0.39), RV size/function, and survival. In contrast, secondary PH with RV‐PA coupling ratio Ees/Ea < 0.68 corresponded extremely close to cut‐off values that define RV dilatation/remodelling (RV end‐diastolic volume >160 mL, RV‐mass/volume‐ratio ≤0.37 g/mL) and dysfunction (right ventricular ejection fraction <38%, tricuspid annular plane systolic excursion <16 mm, fractional area change <42%, and stroke‐volume/end‐systolic volume ratio <0.59) and is associated with a dramatically increased short and medium‐term all‐cause mortality. Independent predictors of prognostically unfavourable RV‐PA coupling (Ees/Ea < 0.68) in secondary PH were a pre‐existent dilated RV [end‐diastolic volume >171 mL, odds ratio (OR) 0.96, P = 0.021], high pulsatile load (PA compliance <2.3 mL/mmHg, OR 8.6, P = 0.003), and advanced systolic left heart failure (left ventricular ejection fraction <30%, OR 1.23, P = 0.028). Conclusions The RV‐PA coupling ratio Ees/Ea predicts overall survival in PH due to HFREF and is mainly affected by pulsatile load, RV remodelling, and left ventricular dysfunction. Prognostically favourable coupling (RV‐Ees/Ea ≥ 0.68) in PH was associated with preserved RV size/function and mid‐term survival, comparable with HFREF without PH.
Aims The aim of this study was to validate the tricuspid annular plane systolic excursion/systolic pulmonary artery (PA) pressure (TAPSE/PASP) ratio with the invasive pressure-volume (PV) loop-derived end-systolic right ventricular (RV) elastance/PA elastance (Ees/Ea) ratio in patients with heart failure with reduced ejection fraction (HFREF) and secondary pulmonary hypertension (PH). Methods and results The relationship of TAPSE and TAPSE/PASP with RV-PV loop (single-beat)-derived contractility Ees, afterload Ea, and Ees/Ea was assessed in 110 patients with HFREF with and without secondary PH. The results were compared with other surrogate parameters such as the fractional area change/PASP ratio. The association of the surrogates with all-cause mortality was evaluated. In patients with PH (n=74, 67%), TAPSE significantly correlated with Ees (r = 0.356), inverse with Ea (r = -0.514) but was most closely associated with Ees/Ea (r = 0.77). Placing TAPSE in a ratio with PASP slightly reduced the relationship to Ees/Ea (r = 0.71) but was more closely related to the parameters of PA vascular Load, diastolic RV function, and RV energetics. The area under the curve of TAPSE/PASP and TAPSE for discriminating overall survival in receiver operating characteristic analysis was not different (P = 0.78. Prognostic relevant cut-offs were 17mm for TAPSE and 0.38 mmimmHg for TAPSE/PASP. Both parameters in multivariate cox regression remained independently prognostically relevant. Conclusion TAPSE is an easily and reliably obtainable and valid surrogate parameter for RV-PA coupling in PH due to HFREF. Putting TAPSE into a ratio with PASP did not further improve the coupling information or prognostic assessment.
Abstract Introduction The severity of secondary tricuspid regurgitation (sTR) predicts outcome of patients with left heart failure with reduced ejection fraction (HFrEF). In these patients sTR predominantly occurs as a result of secondary pulmonary hypertension (PH). However, more than 46% of patients with severe PH have only mild or none sTR. In this study we tested the hypothesis that intrinsic right ventricular (RV) contractility adaptation to the pulmonary arterial (PA) vascular load (RV-PA-coupling) is associated with the presence and severity of sTR. Methods In 110 patients with HFrEF (a post-hoc analysis of the Magdeburger CRT Responder Trial, DRKS00011133) we quantified the RV intrinsic contractility response (end-systolic elastance, Ees) to pulmonary vascular afterload (arterial elastance, Ea) and its coupling ratio (RV-PA coupling ratio: Ees/Ea) by the RV pressure-volume loop catheter technique at baseline, and combined it with echocardiography-derived parameter of sTR presence and severity and RV function. Results Echocardiography at baseline demonstrated no or trace TR (TR0) in 67 patients (61%), mild TR (TR1) in 23 (21%), moderate TR (TR2) in 11 (10%), and severe TR (TR3) in 9 (8%). The transition from TR0 to TR1 was characterized by a pronounced drop of the RV-PA coupling ratio (TR0: Ees/Ea= 0.88, 0.67–1.1 vs. TR1: Ees/Ea= 0.48, 0.3–0.83, p<0.001), caused by a non-adaptive, non-rising Ees (0.24 mmHg/ml, 0.34–0.44 vs. 0.3 mmHg/ml, 0.21–0.46, p=0.8, respectively, p<0.001). We observed a further but only marginal drop of Ees/Ea from TR1 to TR3 (p=0.008) caused by an additional small non-significant decrease of Ees and increase of Ea. Interestingly, other afterload parameter, such as PA-pressure, wedge pressure (PCWP), PA compliance, and PA resistance (PVR), and parameters of RV function, such as tricuspid annular plane systolic excursion (TAPSE) and fractional area shortening (FAC) followed the same course of a pronounced drop from TR0 to TR1, succeeded by an only marginal change from TR1 to TR3. In contrast, the progressive RV-PA un-coupling from TR0 to TR3 was accompanied by a more or less continuously increase of RV size and volume load (end-diastolic (ED) area in 4 chamber view, ED-RV outflow tract diameter, size of tricuspid annulus). In the binary logistic regression analysis, the decrease of RV-PA coupling ratio Ees/Ea (OR 0.14, CI 0.001–0.165) and PA compliance (OR 0.44, CI 0.25–0.79) were independently associated with the transition from TR0 to TR1–3. Conclusion The presence and severity of secondary TR in patients with HFREF is independently associated with a progressive RV-PA uncoupling. Most importantly, already the transition from none TR to mild TR is characterized by a significant and pronounced increase of pulmonary vascular afterload, a non-adaptive RV contractility response, and resulting RV-PA un-coupling. Funding Acknowledgement Type of funding source: Private company. Main funding source(s): Boston Scientific
Abstract Background Right ventricular (RV) to pulmonary artery (PA) coupling (C), quantified by pressure volume (PV) loop analysis, predicts RV function, and is independently associated with long term survival in systolic heart failure (HFrEF). However, the PV loop technique is invasive and complex to carry out, especially when used to do RV functional analyses. Different echo-surrogate parameters are proposed to measure RV-PA-C, such as the tricuspid annular plane systolic excursion, TAPSE/PAsystolic pressure (SP) and FAC (fractional area change)/PASP as the most promising parameters. However, up to now, no validation of these non-invasive coupling indices with the invasive gold standard method of RV-PV-loops has been done. Methods In 111 patients with advanced HFrEF (Post-hoc analysis of Magdeburger CRT Responder Trial, DRKS00011133), echo-derived TAPSE and FAC, and their relationship to PASP were related to the RV PV-loop-derived parameters of intrinsic RV contractility (Ees), pulmonary load (Ea), and the RV-PA-C efficiency (Ees/Ea) by linear regression analysis. Within a MRI substudy (n=49 patients) we examined the relationship of pure longitudinal contraction (MRI-TAPSE) and radial free wall to septum contraction (area change of 5 RV segments from tricuspid valve to apex in the short axis view) to the invasive RV-PA-C. Results The MRI analysis demonstrated that radial RV contraction (R2=0.77, p<0.001) correlated better to invasive RV-PA-C than pure longitudinal shortening (R2=0.37, p<0.001) (radial vs. longitudinal: p<0.00). Echo data for the entire patient cohort confirmed the MRI data. The FAC (R2=0.8, p<0.001) was significantly better associated with RV-PA-C than TAPSE (R2=0.57, p<0.001) (TAPSE vs FAC, p<0.001). Placing TAPSE or FAC into a quotient with PASP did not at all (TAPSE vs. TAPSE/PASP, p=0.1) or significantly attenuated (FAC vs. FAC/PASP R2=0.8 vs 0.58, p<0.001) their association to RV-PA-C. However, FAC/PASP and TAPSE/PASP correlated significantly better with global afterload (Eea), PA compliance, and pressure volume area (PVA), (p<0.001). In ROC analysis for all-cause mortality, all 4 tested parameters were prognostic relevant, however, with higher AUC values for FAC/PASP (AUC=0.74, p<0.001) and TAPSE/PASP (AUC=0.74, p<0.001) than for single TAPSE (AUC= 0.71, p=0.001) or FAC (AUC=0.7, p=0.001). Within a multivariate Cox regression analysis, only the FAC/PASP remained an independent predictor for long term survival. Conclusion FAC, an echo parameter that includes a predominant radial with a smaller part of longitudinal contraction, correlated significantly better to the invasively derived RV-PA-C-ratio than pure longitudinal RV shortening (TAPSE). Combining FAC or TAPSE with PASP did not improve the non-invasive RV-PA coupling information. However, it provided more comprehensive information on pulmonary vascular load and RV oxygen consumption, which seems to be translated into a higher prognostic power. Acknowledgement/Funding scientific grant from Boston Scientific
BACKGROUND:Hyperthermia often ends fatally and must therefore be promptly recognized and adequately treated. CASE:A 28-year-old man participated in a long-distance race (3 km) on a hot summer day (28 °C). The runner collapsed, had to vomit but continued the run and reached the finish. Neurologically, the patient presented with intermittent cerebral seizures. External cooling batteries were immediately applied and cold infusions were started. The patient was admitted to the intensive care unit of the university hospital (body temperature 40.2 °C). After a few hours, a manifest disseminated intravascular coagulopathy developed with multiple organ failure. It took 12 l of volume replacement, 8 units of fresh frozen plasma and 2 units of erythrocyte concentrates in the first 12 h to stabilize the patient. Although with the help of forced external cooling and application of cold infusions, the body temperature could be lowered to 38 °C by the next morning, the overall situation of the patient continued to deteriorate. Despite dialysis and massive substitution of coagulation factors, the patient could not be sufficiently stabilized and died of brain edema. CONCLUSION:Not only the old or young children are subject to the potential danger of a fatal heat stroke but also young athletic persons after normal sports activities (3 km run). Cooling must be started immediately and the patient must be hospitalized as a vital emergency. If hemostasis fails due to the heat-related loss of hepatogenic protein synthesis, a viscious circle begins, which, as in the reported case, is irreversible despite maximum therapy and substitution.
Background: Right ventricular (RV) dysfunction is recognized as a cardinal prognostic marker in systolic heart failure patients. Conflicting data exist on the interaction of RV function and left ventricular (LV) reverse remodeling after cardiac resynchronization therapy (CRT). This prospective monocentric trial was set up to assess the predictive value of baseline RV function and corresponding RV-pulmonary artery (PA) coupling on LV reverse remodeling after CRT. Methods: 110 patients with a CRT indication were prospectively enrolled. RV function and RV-PA interaction were analyzed at baseline using echocardiographic and invasive pressure-volume loop catheter approach. The primary endpoint was reverse LV remodeling (CRT-responder) defined as a reduction in LV end-systolic volume of >= 15% at 6 months. Results: Responders had higher RV-PA coupling ratios (single-beat end-systolic elastance/PA elastance: Ees/Ea) at baseline, which corresponded to smaller RVs with better ejection fraction and lower afterload. After multivariate adjustment, the baseline Ees/Ea remained an independent predictor for LV response (OR 14.0 [1.5-130.8], p = 0.021). Normal coupling (Ees/Ea >= 1) was associated with higher responder rates (RR) (86%). Progressive uncoupling was associated with lower LV-RR (Ees/Ea <= 1-0.5: 57%, and Ees/Ea < 0.5: 32%, p < 0.001), corresponded with higher degrees of LV impairment and severity of mitral regurgitation, and was independently associated with an adverse outcome. Conclusions: A higher baseline RV-PA coupling, reflecting a lower degree of LV-induced pulmonary hypertension and secondary RV-dysfunction, is associated with an improved LV-reverse remodeling and is independently associated with better prognosis. The value of RV-PA ratio as potential guide for CRT patient selection warrants further investigation. (C) 2018 Elsevier B.V. All rights reserved.\
Eine Hyperthermie endet nicht selten letal und muss daher umgehend erkannt und suffizient behandelt werden.
Background The use of noninvasive diagnostics in coronary artery disease remains underdeveloped. To date, there is no simple and inexpensive method that can lead to a reliable diagnosis. Aside from costly and elaborate imaging techniques, exercise ECG, with its rather moderate sensitivity and specificity, is the main diagnostic method available.Methods In this prospective study of 109 patients, the diagnostic value of cardiogoniometry (CGM), a three-dimensional, computer-analyzed vector cardiogram, was determined before and after physical stress, and the results were compared with those obtained from a stress test. We also investigated whether the sensitivity and specificity of the classical bicycle stress test could be increased with the addition of measurements obtained by CGM. Coronary angiography was used as a reference method.Results CGM had a sensitivity of 39% at rest and 42% after physical stress and a specificity of 63% at rest and 57% after stress. This method was found to be markedly inferior to pre-test probability (sensitivity 53%, specificity 81%), stress ECG (sensitivity 52%, specificity 81%), and resting ECG (sensitivity 50%, specificity 64%). The efficiency of exercise ECG testing was not improved by use of CGM results.Conclusion If CGM is to be established as a viable diagnostic method in daily clinical practice, it must undergo further development.
Background Closure of the left atrial appendage (LAA) to prevent cardioembolic events is an alternative therapy to oral anticoagulation in patients with non-valvular atrial fibrillation. The LAA is an important source of natriuretic peptides and its exclusion from the circulation may alter the blood level of these hormones, thereby influencing their diagnostic value and clinical effects. Methods We aimed to prospectively assess potential changes in mid-regional pro A-type natriuretic peptide (MRproANP) and N-terminal pro B-type natriuretic peptide (NT-proBNP) levels 6 weeks and 6 months after interventional LAA closure using the WATCHMAN device. Results In 29 consecutive patients with successful LAA closure baseline MR-proANP level was 274 +/- 208 pmol/l and decreased by - 24.5 +/- 68 (p = 0.07) and - 15.0 +/- 44 pmol/l (p = 0.10) after 6 weeks and 6 months, respectively. The drop in the MR-proANP level after 6 weeks and 6 months was significant in patients with elevated (-214 pmol/l) baseline MR-proANP level (n = 15: -54.3 +/- 78.0, p < 0.01 and -31.8 +/- 45.4 pmol/l, p = 0.03, respectively) and those with reduced left ventricular ejection fraction (LVEF < 45%, n = 7: -87.4 +/- 97.3, p = 0.02 and -60.3 +/- 42.6 pmol/l, p = 0.01, respectively). Baseline NT-proBNP level (median 1054 pg/ml; IQR 621-1977 pg/ml), sodium, potassium, mean systolic or diastolic blood pressure did not change significantly in the mentioned patient groups. Conclusions After LAA closure, MR-proANP level decreased significantly in patients with elevated baseline MRproANP level or reduced LVEF, whereas NT-proBNP level remained unchanged, thereby altering the correlation coefficient between the two biomarkers. Our findings should be considered when using these biomarkers for diagnostic or prognostic evaluation in patients with interventional LAA closure.