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Molecular Biology

D-Index
91
Citations
36979
World Ranking
718
National Ranking
57

Medicine

D-Index
92
Citations
37497
World Ranking
11164
National Ranking
1061

Research.com Recognitions

  • 2011 - Member of Academia Europaea

Overview

Giulio Cossu is affiliated with the University of Manchester in the United Kingdom. Their research spans fields related to biochemistry, genetics, molecular biology, and medicine, with a significant focus on molecular biology and genetics as primary subfields.

Their work covers key topics including muscle physiology and disorders, pluripotent stem cells research, tissue engineering and regenerative medicine, CAR-T cell therapy research, biomedical ethics and regulation, mesenchymal stem cell research, and virus-based gene therapy research.

Recent publications authored or co-authored by Giulio Cossu feature a variety of journals and cover multiple areas:

  • Interstitial Cell Remodeling Promotes Aberrant Adipogenesis in Dystrophic Muscles, 2020, Cell Reports
  • Regenerative medicine: challenges and opportunities, 2020, The Lancet
  • Cost and availability of novel cell and gene therapies, 2023, EMBO Reports
  • Potency assays and biomarkers for cell-based advanced therapy medicinal products, 2023, Frontiers in Immunology
  • Myogenic Cell Transplantation in Genetic and Acquired Diseases of Skeletal Muscle, 2021, Frontiers in Genetics

Frequent co-authors collaborating with Giulio Cossu include:

  • Francesco Galli
  • Yvan Torrente
  • Laricia Bragg
  • Maurilio Sampaolesi
  • Vincent Mouly

Their publications have appeared notably in the following venues:

  • Frontiers in Genetics
  • EMBO Molecular Medicine
  • bioRxiv (Cold Spring Harbor Laboratory)
  • Cell Reports
  • Frontiers in Immunology

Giulio Cossu has been recognized with the award of membership in the Academia Europaea in 2011.

Best Publications

  • Muscle Regeneration by Bone Marrow-Derived Myogenic Progenitors

    Giuliana Ferrari;Gabriella Cusella;Gabriella Cusella;De Angelis;De Angelis;Marcello Coletta;Marcello Coletta

  • Isolation and Expansion of Adult Cardiac Stem Cells From Human and Murine Heart

    Elisa Messina;Luciana De Angelis;Giacomo Frati;Stefania Morrone

  • Pericytes of human skeletal muscle are myogenic precursors distinct from satellite cells.

    Arianna Dellavalle;Maurilio Sampaolesi;Rossana Tonlorenzi;Enrico Tagliafico

  • Redefining the genetic hierarchies controlling skeletal myogenesis: Pax-3 and Myf-5 act upstream of MyoD.

    Shahragim Tajbakhsh;Didier Rocancourt;Giulio Cossu;Margaret Buckingham

  • Mesoangioblast stem cells ameliorate muscle function in dystrophic dogs.

    Maurilio Sampaolesi;Stephane Blot;Giuseppe D'antona;Nicolas Granger

  • Repairing skeletal muscle: regenerative potential of skeletal muscle stem cells

    Francesco Saverio Tedesco;Arianna Dellavalle;Jordi Diaz-Manera;Graziella Messina

  • Cell Therapy of α-Sarcoglycan Null Dystrophic Mice Through Intra-Arterial Delivery of Mesoangioblasts

    Maurilio Sampaolesi;Yvan Torrente;Anna Innocenzi;Rossana Tonlorenzi

  • Stem and progenitor cells in skeletal muscle development, maintenance, and therapy.

    Bruno Péault;Michael Rudnicki;Yvan Torrente;Giulio Cossu

  • Skeletal myogenic potential of human and mouse neural stem cells.

    Rossella Galli;Ugo Borello;Angela Gritti;M. Giulia Minasi

  • 1-Gb/s Transmission Over a Phosphorescent White LED by Using Rate-Adaptive Discrete Multitone Modulation

    A. M. Khalid;G. Cossu;R. Corsini;P. Choudhury

  • Extracellular HMGB1, a signal of tissue damage, induces mesoangioblast migration and proliferation.

    Roberta Palumbo;Maurilio Sampaolesi;Francesco De Marchis;Rossana Tonlorenzi

  • The meso-angioblast: A multipotent, self-renewing cell that originates from the dorsal aorta and differentiates into most mesodermal tissues

    Maria G. Minasi;Mara Riminucci;Luciana De Angelis;Ugo Borello

  • 3.4 Gbit/s visible optical wireless transmission based on RGB LED

    G. Cossu;A. M. Khalid;P. Choudhury;R. Corsini

  • Cardiomyocytes induce endothelial cells to trans-differentiate into cardiac muscle: Implications for myocardium regeneration

    G. Condorelli;U. Borello;L. De Angelis;M. Latronico

  • In vivo satellite cell activation via Myf5 and MyoD in regenerating mouse skeletal muscle.

    R.N. Cooper;S. Tajbakhsh;V. Mouly;G. Cossu

  • Skeletal Myogenic Progenitors Originating from Embryonic Dorsal Aorta Coexpress Endothelial and Myogenic Markers and Contribute to Postnatal Muscle Growth and Regeneration

    L. De Angelis;L. Berghella;M. Coletta;L. Lattanzi

  • No Identical “Mesenchymal Stem Cells” at Different Times and Sites: Human Committed Progenitors of Distinct Origin and Differentiation Potential Are Incorporated as Adventitial Cells in Microvessels

    Benedetto Sacchetti;Alessia Funari;Cristina Remoli;Giuseppe Giannicola

  • Differential activation of Myf5 and MyoD by different Wnts in explants of mouse paraxial mesoderm and the later activation of myogenesis in the absence of Myf5

    S. Tajbakhsh;U. Borello;E. Vivarelli;R. Kelly

  • Electrospun degradable polyesterurethane membranes: potential scaffolds for skeletal muscle tissue engineering.

    Stefania A. Riboldi;Maurilio Sampaolesi;Peter Neuenschwander;Giulio Cossu

  • Pericytes resident in postnatal skeletal muscle differentiate into muscle fibres and generate satellite cells.

    A. Dellavalle;G. Maroli;D. Covarello;E. Azzoni

Frequent Co-Authors

Emilio Clementi
Emilio Clementi University of Milan
Nereo Bresolin
Nereo Bresolin University of Milan
Shahragim Tajbakhsh
Shahragim Tajbakhsh Institut Pasteur
Margaret Buckingham
Margaret Buckingham Institut Pasteur
Mitsuo Oshimura
Mitsuo Oshimura Tottori University
Maurizio Pacifici
Maurizio Pacifici Children's Hospital of Philadelphia
Vania Broccoli
Vania Broccoli Vita-Salute San Raffaele University
Stefano Ferrari
Stefano Ferrari Veneto Eye Bank Foundation
Vincent Mouly
Vincent Mouly Université Paris Cité

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