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Oxidative Stress and Chronic Myeloid Leukemia: A Balance between ROS-Mediated Pro- and Anti-Apoptotic Effects of Tyrosine Kinase Inhibitors. | LitMetric

AI Article Synopsis

  • The balanced translocation t (9; 22) leads to the formation of the BCR-ABL fusion gene, which is associated with chronic myeloid leukemia and results in the production of the p210 BCR-ABL protein that has high tyrosine kinase activity.
  • Tyrosine kinase inhibitors can induce oxidative stress, influencing signaling pathways that determine whether leukemic cells undergo apoptosis or continue to survive, depending on the level of oxidative stress present.
  • Recent studies are exploring ways to manipulate oxidative stress levels to improve the effectiveness of treatment by altering how cancer cells respond to these therapies.

Article Abstract

The balanced reciprocal translocation t (9; 22) (q34; q11) and the BCR-ABL fusion gene, which produce p210 bcr-abl protein production with high tyrosine kinase activity, are characteristics of chronic myeloid leukemia, a myeloproliferative neoplasm. This aberrant protein affects several signaling pathways connected to both apoptosis and cell proliferation. It has been demonstrated that tyrosine kinase inhibitor treatment in chronic myeloid leukemia acts by inducing oxidative stress and, depending on its level, can activate signaling pathways responsible for either apoptosis or survival in leukemic cells. Additionally, oxidative stress and reactive oxygen species generation also mediate apoptosis through genomic activation. Furthermore, it was shown that oxidative stress has a role in both BCR-ABL-independent and BCR-ABL-dependent resistance pathways to tyrosine kinases, while patients with chronic myeloid leukemia were found to have a significantly reduced antioxidant level. The ideal environment for tyrosine kinase inhibitor therapy is produced by a favorable oxidative status. We discuss the latest studies that aim to manipulate the redox system to alter the apoptosis of cancerous cells.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11047441PMC
http://dx.doi.org/10.3390/antiox13040461DOI Listing

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