Browsing by Author "Crea, Filippo (57213692073)"
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Publication Incidence, risk assessment and prevention of sudden cardiac death in cardiomyopathies(2023) ;Polovina, Marija (35273422300) ;Tschöpe, Carsten (7003819329) ;Rosano, Giuseppe (7007131876) ;Metra, Marco (7006770735) ;Crea, Filippo (57213692073) ;Mullens, Wilfried (55916359500) ;Bauersachs, Johann (7004626054) ;Sliwa, Karen (57207223988) ;de Boer, Rudolf A. (8572907800) ;Farmakis, Dimitrios (55296706200) ;Thum, Thomas (57195743477) ;Corrado, Domenico (7004549983) ;Bayes-Genis, Antoni (7004094140) ;Bozkurt, Biykem (7004172442) ;Filippatos, Gerasimos (57396841000) ;Keren, Andre (7005620132) ;Skouri, Hadi (21934953600) ;Moura, Brenda (6602544591) ;Volterrani, Maurizio (7004062259) ;Abdelhamid, Magdy (57069808700) ;Ašanin, Milika (8603366900) ;Krljanac, Gordana (8947929900) ;Tomić, Milenko (58629586600) ;Savarese, Gianluigi (36189499900) ;Adamo, Marianna (56113383300) ;Lopatin, Yuri (59263990100) ;Chioncel, Ovidiu (12769077100) ;Coats, Andrew J.S. (35395386900)Seferović, Petar M. (55873742100)Cardiomyopathies are a significant contributor to cardiovascular morbidity and mortality, mainly due to the development of heart failure and increased risk of sudden cardiac death (SCD). Despite improvement in survival with contemporary treatment, SCD remains an important cause of mortality in cardiomyopathies. It occurs at a rate ranging between 0.15% and 0.7% per year (depending on the cardiomyopathy), which significantly surpasses SCD incidence in the age- and sex-matched general population. The risk of SCD is affected by multiple factors including the aetiology, genetic basis, age, sex, physical exertion, the extent of myocardial disease severity, conduction system abnormalities, and electrical instability, as measured by various metrics. Over the past decades, the knowledge on the mechanisms and risk factors for SCD has substantially improved, allowing for a better-informed risk stratification. However, unresolved issues still challenge the guidance of SCD prevention in patients with cardiomyopathies. In this review, we aim to provide an in-depth discussion of the contemporary concepts pertinent to understanding the burden, risk assessment and prevention of SCD in cardiomyopathies (dilated, non-dilated left ventricular, hypertrophic, arrhythmogenic right ventricular, and restrictive). The review first focuses on SCD incidence in cardiomyopathies and then summarizes established and emerging risk factors for life-threatening arrhythmias/SCD. Finally, it discusses validated approaches to the risk assessment and evidence-based measures for SCD prevention in cardiomyopathies, pointing to the gaps in evidence and areas of uncertainties that merit future clarification. © 2023 European Society of Cardiology. - Some of the metrics are blocked by yourconsent settings
Publication Perivascular adipose tissue as a source of therapeutic targets and clinical biomarkers(2023) ;Antoniades, Charalambos (35412194900) ;Tousoulis, Dimitris (35399054300) ;Vavlukis, Marija (14038383200) ;Fleming, Ingrid (7102053742) ;Duncker, Dirk J. (7005277014) ;Eringa, Etto (6507199239) ;Manfrini, Olivia (6505860414) ;Antonopoulos, Alexios S. (25931366200) ;Oikonomou, Evangelos (36717891800) ;Padró, Teresa (6701424923) ;Trifunovic-Zamaklar, Danijela (9241771000) ;De Luca, Giuseppe (55586620900) ;Guzik, Tomasz (7003467849) ;Cenko, Edina (55651505300) ;Djordjevic-Dikic, Ana (57003143600)Crea, Filippo (57213692073)Obesity is a modifiable cardiovascular risk factor, but adipose tissue (AT) depots in humans are anatomically, histologically, and functionally heterogeneous. For example, visceral AT is a pro-atherogenic secretory AT depot, while subcutaneous AT represents a more classical energy storage depot. Perivascular adipose tissue (PVAT) regulates vascular biology via paracrine cross-talk signals. In this position paper, the state-of-the-art knowledge of various AT depots is reviewed providing a consensus definition of PVAT around the coronary arteries, as the AT surrounding the artery up to a distance from its outer wall equal to the luminal diameter of the artery. Special focus is given to the interactions between PVAT and the vascular wall that render PVAT a potential therapeutic target in cardiovascular diseases. This Clinical Consensus Statement also discusses the role of PVAT as a clinically relevant source of diagnostic and prognostic biomarkers of vascular function, which may guide precision medicine in atherosclerosis, hypertension, heart failure, and other cardiovascular diseases. In this article, its role as a ‘biosensor’ of vascular inflammation is highlighted with description of recent imaging technologies that visualize PVAT in clinical practice, allowing non-invasive quantification of coronary inflammation and the related residual cardiovascular inflammatory risk, guiding deployment of therapeutic interventions. Finally, the current and future clinical applicability of artificial intelligence and machine learning technologies is reviewed that integrate PVAT information into prognostic models to provide clinically meaningful information in primary and secondary prevention. © 2023 Oxford University Press. All rights reserved.
