Evidence map›Paper›PMID 38643121›Full record

ArticleJournal of translational medicine2024

The redox-active defensive Selenoprotein T as a novel stress sensor protein playing a key role in the pathophysiology of heart failure.

Anna De Bartolo, Teresa Pasqua, Naomi Romeo, Vittoria Rago, Ida Perrotta, Francesca Giordano, Maria Concetta Granieri, Alessandro Marrone, Rosa Mazza, Maria Carmela Cerra and 5 more

Open access · goldAbstract read
In one paragraph

Article in Journal of translational medicine, 2024. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 10 papers.

0numbers the graph read from it
0cells of the map it votes in
10citing papers in PubMed
1.9field-weighted citation impact, top 15% of its field
1 · What the graph read from it

What it found

Each row is one number read from the abstract, on the scale the paper reported it, with its interval. Left of the dashed line favours the treatment, right favours the comparator. Under each row is the sentence it came from. New to these charts? A ten-minute tutorial.

The abstract states no effect estimate the extractor could read, or names no intervention and outcome on the map, so this paper lights no cell and moves no belief. It is still indexed, cited and linked below.

2 · The registry

The trial behind it

Trials whose registry record cites this paper, or whose number appears in the abstract. A trial that started after this paper was published is citing it as background, not reporting it.

Neither the registry nor the abstract names a trial number. If this is a trial report, that itself is worth knowing.

3 · Its place in the literature

Who cites it

10 citing papers in PubMed, 8 citations in OpenAlex.

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4 · The record

Corrections and comments

PubMed lists nothing against this paper. Absence here is not a guarantee, only a check that was made.

5 · Who and what money

Authors and funding

15 authors at 5 institutions in 2 countries.

Anna De Bartolo *Cellular and Molecular Cardiovascular Pathophysiology Laboratory, Department of Biology, E. and E. S. (DiBEST), University of Calabria, Arcavacata di Rende, 87036, Cosenza, Italy.
Teresa Pasqua *Department of Health Science, University Magna Graecia of Catanzaro, 88100, Catanzaro, Italy.
Naomi RomeoCellular and Molecular Cardiovascular Pathophysiology Laboratory, Department of Biology, E. and E. S. (DiBEST), University of Calabria, Arcavacata di Rende, 87036, Cosenza, Italy.
Vittoria RagoDepartment of Pharmacy, Health and Nutritional Sciences, University of Calabria, 87036, Rende, Italy.
Ida PerrottaCentre for Microscopy and Microanalysis (CM2), Department of Biology, E. and E. S. (DiBEST), University of Calabria, 87036, Rende, Italy.
Francesca GiordanoDepartment of Pharmacy, Health and Nutritional Sciences, University of Calabria, 87036, Rende, Italy.
Maria Concetta GranieriCellular and Molecular Cardiovascular Pathophysiology Laboratory, Department of Biology, E. and E. S. (DiBEST), University of Calabria, Arcavacata di Rende, 87036, Cosenza, Italy.
Alessandro MarroneCellular and Molecular Cardiovascular Pathophysiology Laboratory, Department of Biology, E. and E. S. (DiBEST), University of Calabria, Arcavacata di Rende, 87036, Cosenza, Italy.
Rosa MazzaOrgan and System Physiology Laboratory, Department of Biology, E. and E. S. (DiBEST), University of Calabria, Arcavacata di Rende, 87036, Cosenza, Italy.
Maria Carmela CerraOrgan and System Physiology Laboratory, Department of Biology, E. and E. S. (DiBEST), University of Calabria, Arcavacata di Rende, 87036, Cosenza, Italy.
Benjamin LefrancUNIROUEN, Inserm U1239, Neuroendocrine, Endocrine and Germinal Differentiation and Communication (NorDiC), Rouen Normandie University, 76000, Mont-Saint-Aignan, France.
Jérôme LeprinceUNIROUEN, Inserm U1239, Neuroendocrine, Endocrine and Germinal Differentiation and Communication (NorDiC), Rouen Normandie University, 76000, Mont-Saint-Aignan, France.
Youssef AnouarUNIROUEN, Inserm U1239, Neuroendocrine, Endocrine and Germinal Differentiation and Communication (NorDiC), Rouen Normandie University, 76000, Mont-Saint-Aignan, France.
Tommaso Angelone *Cellular and Molecular Cardiovascular Pathophysiology Laboratory, Department of Biology, E. and E. S. (DiBEST), University of Calabria, Arcavacata di Rende, 87036, Cosenza, Italy. tommaso.angelone@unical.it.ORCID 0000-0001-7797-7862
Carmine Rocca *Cellular and Molecular Cardiovascular Pathophysiology Laboratory, Department of Biology, E. and E. S. (DiBEST), University of Calabria, Arcavacata di Rende, 87036, Cosenza, Italy.
University of Calabria · ITInserm · FRIstituto Nazionale di Economia Agraria · ITIstituto Nazionale per le Ricerche Cardiovascolari · ITMagna Graecia University · IT

Funding

Ministero della Salute CAL.HUB.RIAMinistero della Salute T4-AN-09Ministero dell'Istruzione, dell'Università e della Ricerca 2022AA37N3Ministero dell'Istruzione, dell'Università e della Ricerca Age-ITMinistero dell'Istruzione, dell'Università e della Ricerca PE00000015Ministero dell'Istruzione, dell'Università e della Ricerca PRIN 2022Ministero dell'Università e della Ricerca 2022XXX2XCMinistero dell'Università e della Ricerca PRIN 2022National Institute of Cardiovascular Research (INRC) Donazione AnnaMaria RuvinettiNational Institute of Cardiovascular Research (INRC) The challenge of dealing with heart failure with preserved ejection fraction: multiple phenotypes with a common pathophysiological substratum?"
6 · The paper itself

Abstract

Maladaptive cardiac hypertrophy contributes to the development of heart failure (HF). The oxidoreductase Selenoprotein T (SELENOT) emerged as a key regulator during rat cardiogenesis and acute cardiac protection. However, its action in chronic settings of cardiac dysfunction is not understood. Here, we investigated the role of SELENOT in the pathophysiology of HF: (i) by designing a small peptide (PSELT), recapitulating SELENOT activity via the redox site, and assessed its beneficial action in a preclinical model of HF [aged spontaneously hypertensive heart failure (SHHF) rats] and against isoproterenol (ISO)-induced hypertrophy in rat ventricular H9c2 and adult human AC16 cardiomyocytes; (ii) by evaluating the SELENOT intra-cardiomyocyte production and secretion under hypertrophied stimulation. Results showed that PSELT attenuated systemic inflammation, lipopolysaccharide (LPS)-induced macrophage M1 polarization, myocardial injury, and the severe ultrastructural alterations, while counteracting key mediators of cardiac fibrosis, aging, and DNA damage and restoring desmin downregulation and SELENOT upregulation in the failing hearts. In the hemodynamic assessment, PSELT improved the contractile impairment at baseline and following ischemia/reperfusion injury, and reduced infarct size in normal and failing hearts. At cellular level, PSELT counteracted ISO-mediated hypertrophy and ultrastructural alterations through its redox motif, while mitigating ISO-triggered SELENOT intracellular production and secretion, a phenomenon that presumably reflects the extent of cell damage. Altogether, these results indicate that SELENOT could represent a novel sensor of hypertrophied cardiomyocytes and a potential PSELT-based new therapeutic approach in myocardial hypertrophy and HF.

Indexed as

Heart FailureSelenoproteinsThioredoxin-Disulfide ReductaseAdultAgedAnimalsHumansHypertrophyIsoproterenolMyocytes, CardiacOxidation-ReductionRatsIsoproterenolSelenoproteinsSELENOT protein, humanSelenot protein, ratThioredoxin-Disulfide ReductaseAntioxidantsCardiac dysfunctionCardiomyocytesPeptidesSelenoproteins

Identifiers

PMID38643121
PMCPMC11032602
OpenAlexW4394989047

What OpenQuestion holds

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LicenceCC BY
Read underepoch 390

Registered trials

None linked

Read under generation 80e0d062 · epoch 390. Bibliography from PubMed, PubMed Central and OpenAlex; grants from NIH RePORTER; trial links from ClinicalTrials.gov; estimates, votes and beliefs from the OpenQuestion graph.