Cellular & Molecular Biology Letters · 2024 · 24 citations · 147 references
Reactive oxygen species (ROS) serve as typical metabolic byproducts of aerobic life and play a pivotal role in redox reactions and signal transduction pathways. Contingent upon their concentration, ROS production not only initiates or stimulates tumorigenesis but also causes oxidative stress (OS) and triggers cellular apoptosis. Mounting literature supports the view that ROS are closely interwoven with the pathogenesis of a cluster of diseases, particularly those involving cell proliferation and differentiation, such as myelodysplastic syndromes (MDS) and chronic/acute myeloid leukemia (CML/AML). OS caused by excessive ROS at physiological levels is likely to affect the functions of hematopoietic stem cells, such as cell growth and self-renewal, which may contribute to defective hematopoiesis. We review herein the eminent role of ROS in the hematological niche and their profound influence on the progress of MDS. We also highlight that targeting ROS is a practical and reliable tactic for MDS therapy.
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Rebecca L. Siegel, Kimberly D. Miller, Hannah E. Fuchs et al. · CA A Cancer Journal for Clinicians · 2021 · 17.1K citations · Full text
Epidemiology Of Cancer, Population Health Sciences, Cancer Registration +20
Pan-cancer analysis of whole genomes
Lauri A. Aaltonen, Federico Abascal, Adam Abeshouse et al. · Nature · 2020 · 3.1K citations · Full text
Pierre Fenaux, Ghulam J. Mufti, Eva Hellström‐Lindberg et al. · The Lancet Oncology · 2009 · 2.6K citations · Full text
Hematological Malignancy, Higher-risk Myelodysplastic Syndromes, Hematology +6
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