Key result
Balloon pulmonary angioplasty significantly reduced median high-sensitivity cardiac troponin T levels from 11 ng/L at baseline to 7 ng/L at 6-month follow-up in patients with inoperable CTEPH.
Why the study?
Does balloon pulmonary angioplasty (BPA) improve biomarker levels (hs-cTnT and NT-proBNP) in patients with inoperable chronic thromboembolic pulmonary hypertension (CTEPH)?
Observational (n=51)
No
Does balloon pulmonary angioplasty (BPA) improve biomarker levels (hs-cTnT and NT-proBNP) in patients with inoperable chronic thromboembolic pulmonary hypertension (CTEPH)?
Absolute Event Rate: 7% vs 11%
p-value: p=<0.001
Balloon pulmonary angioplasty in patients with inoperable CTEPH is associated with significant reductions in hs-cTnT and NT-proBNP, suggesting decreased myocardial damage and wall stress.
Serial hs-cTnT may track reduced myocardial damage after BPA in CTEPH; leaves open whether monitoring improves risk stratification or outcomes.
AIMS: Balloon pulmonary angioplasty (BPA) is an interventional treatment modality for inoperable chronic thromboembolic pulmonary hypertension (CTEPH). Therapy monitoring, based on non-invasive biomarkers, is a clinical challenge. This post-hoc study aimed to assess dynamics of high-sensitivity cardiac troponin T (hs-cTnT) as a marker for myocardial damage and its relation to N-terminal pro-B-type natriuretic peptide (NT-proBNP) levels as a marker for cardiac wall stress. METHODS AND RESULTS: This study included 51 consecutive patients who underwent BPA treatment and completed a 6-month follow-up (6-MFU) between 3/2014 and 3/2017. Biomarker measurement was performed consecutively prior to each BPA and at 6-MFU. In total, the 51 patients underwent an average of 5 BPA procedures. The 6-month survival rate was 96.1%. The baseline (BL) meanPAP (39.5±12.1mmHg) and PVR (515.8±219.2dyn×sec×cm-5) decreased significantly within the 6-MFU (meanPAP: 32.6±12.6mmHg, P<0.001; PVR: 396.9±182.6dyn×sec×cm-5, P<0.001). At BL, the median hs-cTnT level was 11 (IQR 6-16) ng/L and the median NT-proBNP level was 820 (IQR 153-1872) ng/L. The levels of both biomarkers decreased steadily after every BPA, showing the first significant difference after the first procedure. Within the 6-MFU, hs-cTnT levels (7 [IQR 5-12] ng/L; P<0.001) and NT-proBNP levels (159 [IQR 84-464] ng/l; P<0.001) continued to decrease. The hs-cTnT levels correlated with the PVR (rrs = 0.42; p = 0.005), the meanPAP (rrs = 0.32; p = 0.029) and the NT-proBNP (rrs = 0.51; p<0.001) levels at BL. CONCLUSION: Non-invasive biomarker measurement provides valuable evidence for the decreasing impairment of myocardial function and structure during BPA therapy. Changes in hs-cTNT levels are suggestive for a reduction in ongoing myocardial damage.
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Kriechbaum et al. (2018) conducted an observational in Chronic thromboembolic pulmonary hypertension (CTEPH) (n=51). Balloon pulmonary angioplasty vs. Baseline (pre-intervention) was evaluated on High-sensitivity cardiac troponin T (hs-cTnT) levels (ng/L) (p=<0.001). Balloon pulmonary angioplasty significantly reduced median high-sensitivity cardiac troponin T levels from 11 ng/L at baseline to 7 ng/L at 6-month follow-up in patients with inoperable CTEPH.
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