Skip to main content
European Commission logo
italiano italiano
CORDIS - Risultati della ricerca dell’UE
CORDIS

Mitochondrial cristae form, function, and organization dependent upon metabolic sources and implication in heart failure

Descrizione del progetto

Il ruolo dei mitocondri nella cardiopatia ischemica

L’infarto miocardico colpisce milioni di persone ogni anno e può portare a insufficienza cardiaca o addirittura alla morte. Nonostante la nostra comprensione meccanicistica della cardiopatia ischemica, non esiste ancora una terapia curativa. Il progetto MitoFORMSinHF, finanziato dall’UE, si concentra sulla patogenesi dell’infarto miocardico, principalmente sul ruolo del metabolismo e in particolare dei mitocondri. I ricercatori studieranno il meccanismo di rimodellamento e apoptosi mitocondriali dopo un danno cardiaco, che ha il potenziale per svelare nuovi bersagli molecolari per l’aggiornamento mitocondriale. In definitiva, tutto questo potrebbe portare alla progettazione di terapie mirate per la rigenerazione cardiaca.

Obiettivo

Every year 15.9 million people worldwide suffer a myocardial infarction (MI) causing sudden death in some individuals and predisposing survivors to recurrent MI’s and heart failure (HF), making ischemic heart disease the greatest contributor to human mortality. Research has uncovered molecular mechanisms that contribute to cellular demise during ischemic heart disease, however, to date there is no effective molecularly designed therapeutic. Recent studies implicate metabolism in ischemic cardiac injury pathogenesis. Optic Atrophy 1 (OPA1), a dynamin-related inner mitochondrial membrane (IMM) protein, orchestrates IMM fusion and maintains mitochondrial cristae form and structure. During MI disassembly of OPA1-containing oligomers ultimately induces apoptosis. Solute carrier family members (SLC25As) are thought to sense metabolic alterations and influence OPA1 oligomerization to regulate cristae function and shape, implicating metabolism in mitochondrial cristae formation. Whether metabolic sources or metabolic changes during IR injury contribute to disruption of OPA1 assembly, cristae maintenance, and apoptosis are yet to be elucidated. This is of great scientific interest because of the promising therapeutic potential to prevent pathogenic cristae remodeling and apoptosis during IR injury. I will work with state of the art imaging equipment within the Department of Biology at Padua University and receive expert training in mitochondrial biology under the supervision of Dr. Luca Scorrano in order to investigate if metabolic sources contribute to cristae maintenance and are implicated in ischemic cardiac injury. I will disseminate knowledge gained to American and European research societies focused on basic cardiovascular biology by attending conferences and the general public through the use of social media and scientific outreach. This proposals completion will launch my career as an independent investigator in Europe and forge international research connections.

Coordinatore

UNIVERSITA DEGLI STUDI DI PADOVA
Contribution nette de l'UE
€ 171 473,28
Indirizzo
VIA 8 FEBBRAIO 2
35122 Padova
Italia

Mostra sulla mappa

Regione
Nord-Est Veneto Padova
Tipo di attività
Higher or Secondary Education Establishments
Collegamenti
Costo totale
€ 171 473,28