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Molecular Biology

D-Index
58
Citations
15666
World Ranking
2065
National Ranking
30

Overview

Antonio Bernad is a researcher affiliated with the Spanish National Research Council in Spain. Their work spans multiple areas within biochemistry, genetics, molecular biology, and medicine, with a specific focus on molecular biology, cardiology and cardiovascular medicine, cancer research, surgery, and oncology.

Their research topics include:

  • Congenital heart defects research
  • Tissue engineering and regenerative medicine
  • Cardiac fibrosis and remodeling
  • Cancer-related molecular mechanisms research
  • RNA modifications and cancer
  • Pluripotent stem cells research
  • Chemotherapy-induced cardiotoxicity and mitigation

Antonio Bernad has published research in several scientific journals, with frequent publications appearing in:

  • Antioxidants
  • Cells
  • Stem Cells International
  • Fisioterapia
  • Scientific Reports

Recent papers authored or co-authored by Antonio Bernad include:

  • "MicroRNA-4732-3p Is Dysregulated in Breast Cancer Patients with Cardiotoxicity, and Its Therapeutic Delivery Protects the Heart from Doxorubicin-Induced Oxidative Stress in Rats," 2022, Antioxidants
  • "Intracoronary Delivery of Porcine Cardiac Progenitor Cells Overexpressing IGF-1 and HGF in a Pig Model of Sub-Acute Myocardial Infarction," 2021, Cells
  • "Plasmatic Membrane Expression of Adhesion Molecules in Human Cardiac Progenitor/Stem Cells Might Explain Their Superior Cell Engraftment after Cell Transplantation," 2020, Stem Cells International
  • "Cardiac Progenitor Cell Exosomal miR-935 Protects against Oxidative Stress," 2023, Cells
  • "The Vascular Niche for Adult Cardiac Progenitor Cells," 2022, Antioxidants

Frequent collaborators in Antonio Bernad's research include Guillermo Albericio, Carmen Mora Gallardo, Pilar Sepúlveda, Susana Aguilar, and José Luis Torán. These co-authors have contributed to multiple joint publications, indicating ongoing collaborative efforts within their research areas.

Best Publications

  • Unidirectional transfer of microRNA-loaded exosomes from T cells to antigen-presenting cells

    María Mittelbrunn;Cristina Gutiérrez-Vázquez;Carolina Villarroya-Beltri;Susana González

  • Spontaneous human adult stem cell transformation

    Daniel Rubio;Javier Garcia-Castro;María C. Martín;Ricardo de la Fuente

  • Highly efficient DNA synthesis by the phage phi 29 DNA polymerase. Symmetrical mode of DNA replication.

    L Blanco;A Bernad;J M Lázaro;G Martín

  • A conserved 3'----5' exonuclease active site in prokaryotic and eukaryotic DNA polymerases.

    Antonio Bernad;Luis Blanco;José M. Lázaro;Gil Martín

  • Segregation of leading-edge and uropod components into specific lipid rafts during T cell polarization

    Concepción Gómez-Moutón;Jose Luis Abad;Emilia Mira;Rosa Ana Lacalle

  • The transcription factor SNAIL represses vitamin D receptor expression and responsiveness in human colon cancer.

    Héctor G Pálmer;María Jesús Larriba;José Miguel García;Paloma Ordóñez-Morán

  • miR-335 orchestrates cell proliferation, migration and differentiation in human mesenchymal stem cells

    M Tomé;P López-Romero;C Albo;J C Sepúlveda

  • PHI29 DNA polymerase

    Luis Blanco;Antonio Bernad;Margarita Salas

  • DNA polymerase lambda (Pol lambda), a novel eukaryotic DNA polymerase with a potential role in meiosis.

    Miguel Garcı́a-Dı́az;Orlando Domı́nguez;Luis A López-Fernández;Laı́n Teresa de Lera

  • A general structure for DNA-dependent DNA polymerases.

    Luis Blanco;Antonio Bernad;María A. Blasco;Margarita Salas

  • DNA polymerase mu (Pol μ), homologous to TdT, could act as a DNA mutator in eukaryotic cells

    Orlando Domínguez;José F. Ruiz;Teresa Laín de Lera;Miguel García‐Díaz

  • Culture of human mesenchymal stem cells at low oxygen tension improves growth and genetic stability by activating glycolysis

    J C Estrada;C Albo;A Benguría;A Dopazo

  • REACCIONES DE SINTESIS DE DNA (IN VITRO) QUE EMPLEAN DNA POLIMERASA DE PHI 29 MODIFICADA Y UN FRAGMENTO DE DNA QUE CODIFICA DICHA POLIMERASA.

    Luis Blanco;Antonio Bernad;Margarita Salas

  • Human mesenchymal stem cell-replicative senescence and oxidative stress are closely linked to aneuploidy

    J C Estrada;Y Torres;A Benguría;A Dopazo

  • Molecular Characterization of Spontaneous Mesenchymal Stem Cell Transformation

    Daniel Rubio;Silvia Garcia;Maria F. Paz;Teresa De la Cueva

  • Gold glyconanoparticles as new tools in antiadhesive therapy

    Javier Rojo;Vicente Díaz;Vicente Díaz;Jesús M. de la Fuente;Inmaculada Segura

  • Pitfalls in spontaneous in vitro transformation of human mesenchymal stem cells.

    S Garcia;A Bernad;M C Martín;J C Cigudosa

  • Cell Senescence Abrogates the Therapeutic Potential of Human Mesenchymal Stem Cells in the Lethal Endotoxemia Model

    Juan Carlos Sepúlveda;María Tomé;María Eugenia Fernández;Mario Delgado

  • Structural and functional relationships between prokaryotic and eukaryotic DNA polymerases.

    A Bernad;A Zaballos;M Salas;L Blanco

  • Acellular human heart matrix: A critical step toward whole heart grafts.

    Pedro L. Sánchez;M. Eugenia Fernández-Santos;Salvatore Costanza;Andreu M. Climent

Frequent Co-Authors

Margarita Salas
Margarita Salas Spanish National Research Council
Luis Blanco
Luis Blanco Spanish National Research Council
Carlos Martínez-A
Carlos Martínez-A Spanish National Research Council
Maria A. Blasco
Maria A. Blasco Spanish National Cancer Research Centre
Juan Antonio López
Juan Antonio López Spanish National Centre for Cardiovascular Research
Fernando Rojo
Fernando Rojo Spanish National Research Council
José Antonio Enríquez
José Antonio Enríquez Spanish National Centre for Cardiovascular Research
Paula M. Alves
Paula M. Alves Universidade Nova de Lisboa
Jesús Vázquez
Jesús Vázquez Spanish National Centre for Cardiovascular Research
Juan C. Cigudosa
Juan C. Cigudosa Instituto de Salud Carlos III

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