|
|
Daniel W. Sherbenou, Brian J. Druker
J Clin Invest. 2007;
117(8):2067
doi:10.1172/JCI31988
Abstract |
Full text
| PDF
T
he identification of the Philadelphia chromosome in cells from individuals with chronic myelogenous leukemia (CML) led to the recognition that the BCR-ABL tyrosine kinase causes CML. This in turn led to the development of imatinib mesylate, a clinically successful inhibitor of the BCR-ABL kinase. Incorporating the use of markers of BCR-ABL kinase inhibition into clinical trials led to the realization that imatinib-resistant kinase domain mutations are the major cause of relapse during imatinib therapy and the subsequent development of new inhibitors to treat CML patients. The development of imatinib validates an emerging paradigm in cancer, in which a tumor is defined by genetic abnormalities and effective therapies are developed that target events critical to the growth and survival of a specific tumor.
Citation information
This citation data is accumulated from CrossRef, which receives citation information from participating publishers, including this journal.
Not all publishers participate in CrossRef, so this information is not comprehensive.
Additionally, data may not reflect the most current citations to this article,
and the data may differ from citation information available from other sources
(for example, Google Scholar, Web of Science, and Scopus).
Total citations by year
in CrossRef
Citations to this article
in CrossRef
(32)
| Title and authors |
Publication |
Year |
Regulation of mammalian target of rapamycin and mitogen activated protein kinase pathways by BCR–ABL
Amanda J. Redig, Eliza Vakana, Leonidas C. Platanias
|
Leuk Lymphoma
|
2011 |
Inaugural Article: Chemical genetic strategy for targeting protein kinases based on covalent complementarity
A. L. Garske, U. Peters, A. T. Cortesi, J. L. Perez, K. M. Shokat
|
Proceedings of the National Academy of Sciences
|
2011 |
Retrospective multicenter study on the development of peripheral lymphocytosis following second-line dasatinib therapy for chronic myeloid leukemia
Su Jin Lee, Chul Won Jung, Dae-Young Kim, Kyoo-Hyung Lee, Sang Kyun Sohn, Jae-Yong Kwak, Hyeoung-Joon Kim, In Ho Kim, Seonyang Park, Dong Hwan Dennis Kim
|
Am. J. Hematol.
|
2011 |
Advances in Cancer Research
Manuel R. Teixeira, Sverre Heim
|
Advances in Cancer Research Volume 112
|
2011 |
Why do Kinase Inhibitors Cause Cardiotoxicity and What can be Done About It?
Hui Cheng, Thomas Force
|
Progress in Cardiovascular Diseases
|
2010 |
Critical roles for mTORC2- and rapamycin-insensitive mTORC1-complexes in growth and survival of BCR-ABL-expressing leukemic cells
N. Carayol, E. Vakana, A. Sassano, S. Kaur, D. J. Goussetis, H. Glaser, B. J. Druker, N. J. Donato, J. K. Altman, S. Barr, L. C. Platanias
|
Proceedings of the National Academy of Sciences
|
2010 |
The tumor-immune microenvironment and response to radiation therapy.
Stephen L Shiao, Lisa M Coussens
|
J Mammary Gland Biol Neoplasia
|
2010 |
Oxidation-induced intramolecular disulfide bond inactivates mitogen-activated protein kinase kinase 6 by inhibiting ATP binding.
Yarui Diao, Wei Liu, Catherine C L Wong, Xi Wang, Kaman Lee, Po-yan Cheung, Lifeng Pan, Tao Xu, Jiahuai Han, John R Yates, Mingjie Zhang, Zhenguo Wu
|
Proc. Natl. Acad. Sci. U.S.A.
|
2010 |
Imatinib resistance associated with BCR-ABL upregulation is dependent on HIF-1alpha-induced metabolic reprograming.
F Zhao, A Mancuso, T V Bui, X Tong, J J Gruber, C R Swider, P V Sanchez, J J Lum, N Sayed, J V Melo, A E Perl, M Carroll, S W Tuttle, C B Thompson
|
Oncogene
|
2010 |
Regulation of cell proliferation and survival: Convergence of protein kinases and caspases
James S. Duncan, Jacob P. Turowec, Greg Vilk, Shawn S.C. Li, Gregory B. Gloor, David W. Litchfield
|
Biochimica et Biophysica Acta (BBA) - Proteins & Proteomics
|
2010 |
|