Literature DB >> 19343297

Treatment selection after imatinib resistance in chronic myeloid leukemia.

Elias Jabbour1, Jorge Cortes, Hagop Kantarjian.   

Abstract

Chronic myeloid leukemia (CML) is a progressive and often fatal malignancy of the blood. The harbinger of CML is a chromosomal translocation that results in the synthesis of the BCR-ABL fusion protein, a constitutively active tyrosine kinase. The advent of imatinib, an inhibitor targeted specifically for BCR-ABL, represented a significant medical advance in CML therapy. However, patients with CML can exhibit varying responses to first-line treatment with imatinib. While most patients respond to treatment, some may experience a loss of response or require treatment discontinuation due to toxicity. Frequent monitoring for resistance or intolerance is a requirement for recognition of suboptimal response. Mutational analysis of the patient's BCR-ABL alleles is also informative and may be predictive of a response to therapy. Published physician guidelines have highlighted these recommendations, but it is not clear if these guidelines are universally followed. One option in patients showing poor response to standard-dose imatinib of 400 mg is to escalate the dose. However, this option should be reserved for patients with minimal disease burden. Clinically available options mainly include second-generation tyrosine kinase inhibitors, such as dasatinib and nilotinib. Allogenic stem cell transplantations (for eligible patients) also should be considered. The disease and patient characteristics at the time of imatinib failure should be evaluated before choosing second-line therapy to optimize the therapeutic benefit without unnecessary delay.

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Year:  2009        PMID: 19343297     DOI: 10.1007/s11523-008-0100-y

Source DB:  PubMed          Journal:  Target Oncol        ISSN: 1776-2596            Impact factor:   4.493


  57 in total

1.  Role of the INK4a locus in tumor suppression and cell mortality.

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Journal:  Cell       Date:  1996-04-05       Impact factor: 41.582

2.  Dasatinib (BMS-354825) pharmacokinetics and pharmacodynamic biomarkers in animal models predict optimal clinical exposure.

Authors:  Feng R Luo; Zheng Yang; Amy Camuso; Richard Smykla; Kelly McGlinchey; Krista Fager; Christine Flefleh; Stephen Castaneda; Ivan Inigo; David Kan; Mei-Li Wen; Robert Kramer; Anne Blackwood-Chirchir; Francis Y Lee
Journal:  Clin Cancer Res       Date:  2006-12-01       Impact factor: 12.531

3.  Imatinib induces hematologic and cytogenetic responses in patients with chronic myelogenous leukemia in myeloid blast crisis: results of a phase II study.

Authors:  Charles L Sawyers; Andreas Hochhaus; Eric Feldman; John M Goldman; Carole B Miller; Oliver G Ottmann; Charles A Schiffer; Moshe Talpaz; Francois Guilhot; Michael W N Deininger; Thomas Fischer; Steve G O'Brien; Richard M Stone; Carlo B Gambacorti-Passerini; Nigel H Russell; Jose J Reiffers; Thomas C Shea; Bernard Chapuis; Steven Coutre; Sante Tura; Enrica Morra; Richard A Larson; Alan Saven; Christian Peschel; Alois Gratwohl; Franco Mandelli; Monique Ben-Am; Insa Gathmann; Renaud Capdeville; Ronald L Paquette; Brian J Druker
Journal:  Blood       Date:  2002-05-15       Impact factor: 22.113

4.  Five-year follow-up of patients receiving imatinib for chronic myeloid leukemia.

Authors:  Brian J Druker; François Guilhot; Stephen G O'Brien; Insa Gathmann; Hagop Kantarjian; Norbert Gattermann; Michael W N Deininger; Richard T Silver; John M Goldman; Richard M Stone; Francisco Cervantes; Andreas Hochhaus; Bayard L Powell; Janice L Gabrilove; Philippe Rousselot; Josy Reiffers; Jan J Cornelissen; Timothy Hughes; Hermine Agis; Thomas Fischer; Gregor Verhoef; John Shepherd; Giuseppe Saglio; Alois Gratwohl; Johan L Nielsen; Jerald P Radich; Bengt Simonsson; Kerry Taylor; Michele Baccarani; Charlene So; Laurie Letvak; Richard A Larson
Journal:  N Engl J Med       Date:  2006-12-07       Impact factor: 91.245

5.  Hematologic and cytogenetic responses to imatinib mesylate in chronic myelogenous leukemia.

Authors:  Hagop Kantarjian; Charles Sawyers; Andreas Hochhaus; Francois Guilhot; Charles Schiffer; Carlo Gambacorti-Passerini; Dietger Niederwieser; Debra Resta; Renaud Capdeville; Ulrike Zoellner; Moshe Talpaz; Brian Druker; John Goldman; Stephen G O'Brien; Nigel Russell; Thomas Fischer; Oliver Ottmann; Pascale Cony-Makhoul; Thierry Facon; Richard Stone; Carole Miller; Martin Tallman; Randy Brown; Michael Schuster; Thomas Loughran; Alois Gratwohl; Franco Mandelli; Giuseppe Saglio; Mario Lazzarino; Domenico Russo; Michele Baccarani; Enrica Morra
Journal:  N Engl J Med       Date:  2002-02-28       Impact factor: 91.245

6.  Dominant negative MYC blocks transformation by ABL oncogenes.

Authors:  C L Sawyers; W Callahan; O N Witte
Journal:  Cell       Date:  1992-09-18       Impact factor: 41.582

7.  SKI-606, a 4-anilino-3-quinolinecarbonitrile dual inhibitor of Src and Abl kinases, is a potent antiproliferative agent against chronic myelogenous leukemia cells in culture and causes regression of K562 xenografts in nude mice.

Authors:  Jennifer M Golas; Kim Arndt; Carlo Etienne; Judy Lucas; Danielle Nardin; James Gibbons; Philip Frost; Fei Ye; Diane H Boschelli; Frank Boschelli
Journal:  Cancer Res       Date:  2003-01-15       Impact factor: 12.701

8.  Result of high-dose imatinib mesylate in patients with Philadelphia chromosome-positive chronic myeloid leukemia after failure of interferon-alpha.

Authors:  Jorge Cortes; Francis Giles; Susan O'Brien; Deborah Thomas; Guillermo Garcia-Manero; Mary Beth Rios; Stefan Faderl; Srdan Verstovsek; Alessandra Ferrajoli; Emil J Freireich; Moshe Talpaz; Hagop Kantarjian
Journal:  Blood       Date:  2003-03-13       Impact factor: 22.113

9.  Nilotinib (formerly AMN107), a highly selective BCR-ABL tyrosine kinase inhibitor, is active in patients with imatinib-resistant or -intolerant accelerated-phase chronic myelogenous leukemia.

Authors:  Philipp le Coutre; Oliver G Ottmann; Francis Giles; Dong-Wook Kim; Jorge Cortes; Norbert Gattermann; Jane F Apperley; Richard A Larson; Elisabetta Abruzzese; Stephen G O'Brien; Kazimierz Kuliczkowski; Andreas Hochhaus; Francois-Xavier Mahon; Giuseppe Saglio; Marco Gobbi; Yok-Lam Kwong; Michele Baccarani; Timothy Hughes; Giovanni Martinelli; Jerald P Radich; Ming Zheng; Yaping Shou; Hagop Kantarjian
Journal:  Blood       Date:  2007-11-29       Impact factor: 22.113

10.  Ras recruits Raf-1 to the plasma membrane for activation by tyrosine phosphorylation.

Authors:  R Marais; Y Light; H F Paterson; C J Marshall
Journal:  EMBO J       Date:  1995-07-03       Impact factor: 11.598

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  15 in total

1.  Inhibition of AMP-activated protein kinase pathway sensitizes human leukemia K562 cells to nontoxic concentration of doxorubicin.

Authors:  Qun Zhu; Bo Shen; Boshao Zhang; Wei Zhang; Steve H Chin; Junfei Jin; Duan-fang Liao
Journal:  Mol Cell Biochem       Date:  2010-03-26       Impact factor: 3.396

2.  Upregulated TCRζ enhances interleukin-2 production in T-cells from patients with CML.

Authors:  Xianfeng Zha; Shaohua Chen; Lijian Yang; Li Shi; Bo Li; Xiuli Wu; Yuhong Lu; Yangqiu Li
Journal:  DNA Cell Biol       Date:  2012-10-11       Impact factor: 3.311

3.  Outcome of treatment of chronic myeloid leukemia with second-generation tyrosine kinase inhibitors after imatinib failure.

Authors:  A Megan Cornelison; Hagop Kantarjian; Jorge Cortes; Elias Jabbour
Journal:  Clin Lymphoma Myeloma Leuk       Date:  2011-04-28

4.  Integrating pharmacogenetics and therapeutic drug monitoring: optimal dosing of imatinib as a case-example.

Authors:  Alain Li-Wan-Po; Peter Farndon; Charles Craddock; Michael Griffiths
Journal:  Eur J Clin Pharmacol       Date:  2010-01-29       Impact factor: 2.953

5.  Decreased level of recent thymic emigrants in CD4+ and CD8+T cells from CML patients.

Authors:  Yangqiu Li; Suxia Geng; Qingsong Yin; Shaohua Chen; Lijian Yang; Xiuli Wu; Bo Li; Xin Du; Christian A Schmidt; Grzegorz K Przybylski
Journal:  J Transl Med       Date:  2010-05-14       Impact factor: 5.531

6.  Interferon gamma modulates sensitivity of CML cells to tyrosine kinase inhibitors.

Authors:  Stefanie Andrea Erika Held; Annkristin Heine; Anne Ruth Kesper; Kathrin Schönberg; Anika Beckers; Dominik Wolf; Peter Brossart
Journal:  Oncoimmunology       Date:  2015-07-01       Impact factor: 8.110

7.  Ponatinib in refractory Philadelphia chromosome-positive leukemias.

Authors:  Jorge E Cortes; Hagop Kantarjian; Neil P Shah; Dale Bixby; Michael J Mauro; Ian Flinn; Thomas O'Hare; Simin Hu; Narayana I Narasimhan; Victor M Rivera; Tim Clackson; Christopher D Turner; Frank G Haluska; Brian J Druker; Michael W N Deininger; Moshe Talpaz
Journal:  N Engl J Med       Date:  2012-11-29       Impact factor: 91.245

Review 8.  Long-term outcomes in the second-line treatment of chronic myeloid leukemia: a review of tyrosine kinase inhibitors.

Authors:  Elias Jabbour; Jorge Cortes; Hagop Kantarjian
Journal:  Cancer       Date:  2010-10-13       Impact factor: 6.860

9.  Aberrant DNA methylation is associated with disease progression, resistance to imatinib and shortened survival in chronic myelogenous leukemia.

Authors:  Jaroslav Jelinek; Vazganush Gharibyan; Marcos R H Estecio; Kimie Kondo; Rong He; Woonbok Chung; Yue Lu; Nianxiang Zhang; Shoudan Liang; Hagop M Kantarjian; Jorge E Cortes; Jean-Pierre J Issa
Journal:  PLoS One       Date:  2011-07-08       Impact factor: 3.240

10.  AP24534, a pan-BCR-ABL inhibitor for chronic myeloid leukemia, potently inhibits the T315I mutant and overcomes mutation-based resistance.

Authors:  Thomas O'Hare; William C Shakespeare; Xiaotian Zhu; Christopher A Eide; Victor M Rivera; Frank Wang; Lauren T Adrian; Tianjun Zhou; Wei-Sheng Huang; Qihong Xu; Chester A Metcalf; Jeffrey W Tyner; Marc M Loriaux; Amie S Corbin; Scott Wardwell; Yaoyu Ning; Jeffrey A Keats; Yihan Wang; Raji Sundaramoorthi; Mathew Thomas; Dong Zhou; Joseph Snodgrass; Lois Commodore; Tomi K Sawyer; David C Dalgarno; Michael W N Deininger; Brian J Druker; Tim Clackson
Journal:  Cancer Cell       Date:  2009-11-06       Impact factor: 31.743

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