Data from Single-Cell Analysis of Bone Marrow CD8<sup>+</sup> T Cells in Myeloid Neoplasms Reveals Pathways Associated with Disease Progression and Response to Treatment with Azacitidine
Athanasios Tasis(Democritus University of Thrace), Ioannis Mitroulis(Democritus University of Thrace), Anastasia Filia(Academy of Athens), Ιoannis Kotsianidis(Democritus University of Thrace), Paul Costeas(Deakin University), Ioannis Kourtzelis(Biomedical Research Institute), Ioannis Kyprianou(Biomedical Research Foundation), Themis Alissafi(National and Kapodistrian University of Athens), Nikos E. Papaioannou(Academy of Athens), Kyriaki Katsiki(Democritus University of Thrace), Antonios Chatzigeorgiou(National and Kapodistrian University of Athens), Maria Grigoriou(Democritus University of Thrace), Nikolaos Paschalidis(Queen Mary University of London), Panagiotis Liakopoulos(Democritus University of Thrace), Konstantinos Liapis(Democritus University of Thrace), Vasileios Papadopoulos(Democritus University of Thrace), Christina Maria Rimpa(Democritus University of Thrace), Petros Kolovos(Democritus University of Thrace), Triantafyllos Chavakis(Technische Universität Dresden), Petroula Gerasimou(Center for the Study of Childhood and Adolescence), Catherine Loukogiannaki(Academy of Athens), Eleftheria Lamprianidou(Democritus University of Thrace)
Cited by 1
Related Papers
Defining trained immunity and its role in health and disease
|Nature reviews. Immunology|2020|2.5k
Local and systemic mechanisms linking periodontal disease and inflammatory comorbidities
|Nature reviews. Immunology|2021|1.6k
Implications of TP53 allelic state for genome stability, clinical presentation and outcomes in myelodysplastic syndromes
|Nature Medicine|2020|633
Trained immunity, tolerance, priming and differentiation: distinct immunological processes
|Nature Immunology|2020|591