Impairment of mitophagy and autophagy accompanies calcific aortic valve stenosis favouring cell death and the severity of disease

Author:

Morciano Giampaolo12,Patergnani Simone12,Pedriali Gaia1,Cimaglia Paolo1ORCID,Mikus Elisa1,Calvi Simone1ORCID,Albertini Alberto1ORCID,Giorgi Carlotta2,Campo Gianluca13ORCID,Ferrari Roberto13ORCID,Pinton Paolo12

Affiliation:

1. Maria Cecilia Hospital, GVM Care&Research, 48033 Cotignola, Italy

2. Department of Medical Sciences, Section of Experimental Medicine, Laboratory for Technologies of Advanced Therapies (LTTA), University of Ferrara, Via Fossato di Mortara, 70, 44121 Ferrara, Italy

3. Cardiovascular Institute, Azienda Ospedaliero-Universitaria Sant’Anna, 44121 Ferrara, Italy

Abstract

Abstract Aims In the last 15 years, some observations tried to shed light on the dysregulation of the cellular self-digestion process in calcific aortic valve stenosis (CAVS), but the results obtained remain still controversial. This work is aimed to definitively establish the trend of autophagy in patients affected by CAVS, to analyse the putative involvement of other determinants, which impact on the mitochondrial quality control mechanisms and to explore possible avenues for pharmacological interventions in the treatment of CAVS. Methods and results This observational study, performed exclusively in ex vivo human samples (cells and serum), by using biochemical approaches and correlations with clinical data, describes new biological features of the calcified valve in terms of mitochondrial dysfunctions. In detail, we unveiled a significant deficiency in mitochondrial respiration and in ATP production coupled to increase production of lactates. In addition, mitochondrial population in the pathologic group is aged with significant alterations in biogenesis and mitophagy pathways. We are also reporting an updated view about autophagy accompanying the calcification process and advanced stages of the disease. We provided evidence for a rapamycin-based therapeutic strategy to revert the calcified phenotype to the wild type one. Conclusion Our data suggest that the CAVS phenotype is featured by defects in mitochondrial quality control mechanisms and that autophagy is not activated enough to counteract cell death and sustain cell functions. Thus, boosting autophagy and mitophagy from short- to long-term reverts quite all pathological phenotypes.

Funder

Italian Association for Cancer Research

Associazione Ricerca Oncologica Sperimentale Estense (A-rose), Progetti di Rilevante Interesse Nazionale

University of Ferrara

Progetti di Rilevante Interesse Nazionale

Italian Ministry of Health

European Research Council Grant

Fondazione Umberto Veronesi

Publisher

Oxford University Press (OUP)

Subject

Physiology (medical),Cardiology and Cardiovascular Medicine,Physiology

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