Disease Score gda Association Type Type Original DB Sentence supporting the association PMID PMID Year
CUI: C0023467
Disease: Leukemia, Myelocytic, Acute
Leukemia, Myelocytic, Acute
0.160 Biomarker disease BEFREE Acute myeloid leukaemia (AML) cells possess metabolism profiles, such as higher rates of oxidative phosphorylation and dependence on fatty acid oxidation for survival, and are dependent on the sophisticated regulation of reactive oxygen species (ROS) generation for survival, drug resistance and stemness maintenance. 31236919 2019
CUI: C0023467
Disease: Leukemia, Myelocytic, Acute
Leukemia, Myelocytic, Acute
0.160 Biomarker disease BEFREE 7-KC increased ROS generation by LMSCs, which was related to decreased cell viability. 31117185 2019
CUI: C0023467
Disease: Leukemia, Myelocytic, Acute
Leukemia, Myelocytic, Acute
0.160 Biomarker disease BEFREE The results of the present study provided novel insight into the function of ATO and ROS1 in regulating AML progression. 29805662 2018
CUI: C0023467
Disease: Leukemia, Myelocytic, Acute
Leukemia, Myelocytic, Acute
0.160 GeneticVariation disease GWASCAT Genome-wide haplotype association study identify the FGFR2 gene as a risk gene for acute myeloid leukemia. 27903959 2017
CUI: C0023467
Disease: Leukemia, Myelocytic, Acute
Leukemia, Myelocytic, Acute
0.160 AlteredExpression disease BEFREE We also show for the first time that the levels of ROS generated were able to strongly promote the proliferation of AML cell lines, primary AML blasts, and, to a lesser extent, normal CD34(+) cells, and that the response to ROS is limited by the activation of the oxidative stress pathway mediated though p38(MAPK). 24089327 2013
CUI: C0023467
Disease: Leukemia, Myelocytic, Acute
Leukemia, Myelocytic, Acute
0.160 Biomarker disease BEFREE The internal tandem duplication (ITD) of the juxtamembrane region of the FLT3 receptor has been associated with increased reactive oxygen species (ROS) generation in acute myeloid leukemia (AML). 22807997 2012
CUI: C0023467
Disease: Leukemia, Myelocytic, Acute
Leukemia, Myelocytic, Acute
0.160 GeneticVariation disease BEFREE Although the exact mechanisms of increased ROS production remain largely unknown and no single pathway has been detected thus far, some oncogenic proteins (e.g., the activated tyrosine kinases BCR-ABL1 and FLT3-ITD) seem to play a key role in driving genetic instability by increased ROS generation which influences the disease course (e.g., blast crisis in chronic myeloid leukemia or relapse in FLT3-ITD positive acute myeloid leukemia). 20842730 2010