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1.
Arch Cardiovasc Dis ; 2023 Sep 12.
Artigo em Inglês | MEDLINE | ID: mdl-37758593

RESUMO

BACKGROUND: Cardiovascular disease and cancer are the two leading causes of mortality worldwide, and their association presents a therapeutic challenge. Current data regarding the prognosis of active cancer in patients undergoing transcatheter aortic valve replacement are conflicting. AIM: To determine the impact and prognosis of active cancer in transcatheter aortic valve replacement. METHODS: All consecutive patients with severe aortic stenosis treated by transcatheter aortic valve replacement between February 2010 and May 2019 were enrolled in a prospective study. The cohort was divided according to the presence or absence of active cancer at baseline. The primary endpoint was all-cause mortality 1 year after the procedure. RESULTS: A total of 1,125 patients were enrolled: 1,037 (92.2%) without and 88 (7.8%) with active cancer. The most frequent cancers were haematological (36.4%), breast (14.8%) and prostate (14.8%), with 79.5% of patients receiving curative treatment and 17.0% receiving palliative treatment. The 1-year mortality rate was higher in patients with active cancer (27.3% vs. 13.9%; P<0.01), mainly driven by non-cardiovascular causes. An increased cardiovascular mortality rate at 2 years was seen in patients with active cancer (27.5% vs. 15.0%; P=0.03) compared with a similar rate at 1-year follow-up. Active cancer was a strong predictor of 1-year all-cause mortality (hazard ratio 2.46, 95% confidence interval 1.19-4.68; P=0.02). Major/life-threatening bleeding events at 1 year were more frequent in patients with active cancer (P=0.02). CONCLUSIONS: Among patients who undergo transcatheter aortic valve replacement, 1-year all-cause mortality is higher in those with active cancer. We also observed a trend towards increased long-term bleeding events in case of active cancer.

2.
J Clin Med ; 11(1)2021 Dec 31.
Artigo em Inglês | MEDLINE | ID: mdl-35011952

RESUMO

BACKGROUND: Bleeding events are among the striking complications following transcatheter aortic valve replacement (TAVR), and bleeding prediction models are crucially warranted. Several studies have highlighted that primary hemostasis disorders secondary to persistent loss of high-molecular-weight (HMW) multimers of the von Willebrand factor (vWF) and assessed by adenosine diphosphate closure time (CT-ADP) may be a strong predictor of late major/life-threatening bleeding complications (MLBCs). Pre-existing atrial fibrillation (AF) is a frequent comorbidity in TAVR patients and potentially associated with increased bleeding events after the procedure. OBJECTIVES: This study evaluated the impact of ongoing primary hemostasis disorders, as assessed by post-procedural CT-ADP > 180 s, on clinical events after TAVR among anticoagulated AF patients. METHODS: An ongoing primary hemostasis disorder was defined by post-procedure CT-ADP > 180 s. Bleeding complications were assessed according to the Valve Academic Research Consortium-2 (VARC-2) criteria. The primary endpoint was the occurrence of late MLBCs at one-year follow-up. The secondary endpoint was a composite of mortality, stroke, myocardial infarction, and rehospitalization for heart failure. RESULTS: In total, 384 TAVR patients were included in the analysis. Of these patients, 57 patients (14.8%) had a prolongated CT-ADP > 180 s. Increased MLBCs were observed in patients with CT-ADP > 180 s (35.1% versus 1.2%; p < 0.0001). Conversely, the occurrence of the composite endpoint did not differ between the groups. Multivariate analysis identified CT-ADP > 180 s (HR 28.93; 95% CI 9.74-85.95; p < 0.0001), bleeding history, paradoxical aortic stenosis (AS), and major vascular complications following TAVR as independent predictors of late MLBCs. CONCLUSION: Among patients with anticoagulated AF, a post-procedural CT-ADP > 180 s was identified as a strong independent predictor of late MLBCs. These findings suggest that persistent primary hemostasis disorders contribute to a higher risk of late bleeding events and should be considered for a tailored, risk-adjusted antithrombotic therapy after TAVR.

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