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Jerald P. Radich, Andrew D. Zelenetz, Wing C. Chan, Carlo M. Croce, Myron S. Czuczman, Harry P. Erba, Sandra J. Horning, Jane Houldsworth, B. Douglas Smith, David S. Snyder, Hema M. Sundar, Meir Wetzler and Jane N. Winter

The introduction of targeted therapies has revolutionized treatment and improved outcomes in patients with leukemias and lymphomas. However, many patients experience relapse caused by the persistence of residual malignant cells. Cytogenetic and molecular techniques are increasingly being used to assess and quantify minimal residual disease (MRD). The emergence of advanced technologies has led to the discovery of multiple novel molecular markers that can be used to detect MRD and predict outcome in patients with leukemias and lymphomas. Gene expression signatures that predict clinical outcomes in patients with non-Hodgkin's lymphoma have been identified. In chronic myelogenous leukemia, molecular monitoring has become more important in assessing response and detecting resistance to therapy. In acute leukemias, several new markers have shown potential in prognostication and monitoring treatment. In leukemias and lymphomas, microRNAs have been identified that may be useful in diagnostics and prognostication. To address these issues, the National Comprehensive Cancer Network (NCCN) organized a task force consisting of a panel of experts in leukemia and lymphoma to discuss recent advances in the field of molecular markers and monitoring MRD.

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Susan O'Brien, Ellin Berman, Joseph O. Moore, Javier Pinilla-Ibarz, Jerald P. Radich, Paul J. Shami, B. Douglas Smith, David S. Snyder, Hema M. Sundar, Moshe Talpaz and Meir Wetzler

The advent of imatinib has dramatically improved outcomes in patients with chronic myelogenous leukemia (CML). It has become the standard of care for all patients with newly diagnosed chronic-phase CML based on its successful induction of durable responses in most patients. However, its use is complicated by the development of resistance in some patients. Dose escalation might overcome this resistance if detected early. The second-generation tyrosine kinase inhibitors (TKIs) dasatinib and nilotinib provide effective therapeutic options for managing patients resistant or intolerant to imatinib. Recent studies have shown that dasatinib and nilotinib provide quicker and potentially better responses than standard-dose imatinib when used as a first-line treatment. The goal of therapy for patients with CML is the achievement of a complete cytogenetic response, and eventually a major molecular response, to prevent disease progression to accelerated or blast phase. Selecting the appropriate TKI depends on many factors, including disease phase, primary or secondary resistance to TKI, the agent's side effect profile and its relative effectiveness against BCR-ABL mutations, and the patient's tolerance to therapy. In October 2010, NCCN organized a task force consisting of a panel of experts from NCCN Member Institutions with expertise in the management of patients with CML to discuss these issues. This report provides recommendations regarding the selection of TKI therapy for the management of patients with CML based on the evaluation of available published clinical data and expert opinion among the task force members.

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Susan O'Brien, Ellin Berman, Hossein Borghaei, Daniel J. DeAngelo, Marcel P. Devetten, Steven Devine, Harry P. Erba, Jason Gotlib, Madan Jagasia, Joseph O. Moore, Tariq Mughal, Javier Pinilla-Ibarz, Jerald P. Radich, Neil P. Shah, Paul J. Shami, B. Douglas Smith, David S. Snyder, Martin S. Tallman, Moshe Talpaz and Meir Wetzler

Chronic Myelogenous Leukemia Clinical Practice Guidelines in Oncology NCCN Categories of Evidence and Consensus Category 1: The recommendation is based on high-level evidence (e.g., randomized controlled trials) and there is uniform NCCN consensus. Category 2A: The recommendation is based on lower-level evidence and there is uniform NCCN consensus. Category 2B: The recommendation is based on lower-level evidence and there is nonuniform NCCN consensus (but no major disagreement). Category 3: The recommendation is based on any level of evidence but reflects major disagreement. All recommendations are category 2A unless otherwise noted. Clinical trials: The NCCN believes that the best management for any cancer patient is in a clinical trial. Participation in clinical trials is especially encouraged. Overview Chronic myelogenous leukemia (CML) accounts for 15% of adult leukemias. Although the median age of disease onset is 67 years, CML occurs in all age groups (Surveillance, Epidemiology, and End Results [SEER] statistics). In 2009, an estimated 5050 cases will be diagnosed and 470 patients will die from the disease in the United States.1 CML is a hematopoietic stem cell disease, which is characterized by a reciprocal translocation between chromosomes 9 and 22, resulting in the formation of the Philadelphia chromosome (Ph chromosome). This translocation t(9;22) results in the head-to-tail fusion of the breakpoint cluster region (BCR) gene on chromosome 22 at band q11 and the Abelson murine leukemia (ABL) gene located on chromosome 9 at band q34.2 The product of the fusion gene (BCR-ABL) is believed to play a central role in the...
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Susan O'Brien, Camille N. Abboud, Mojtaba Akhtari, Jessica Altman, Ellin Berman, Daniel J. DeAngelo, Steven Devine, Amir T. Fathi, Jason Gotlib, Madan Jagasia, Joseph O. Moore, Javier Pinilla-Ibarz, Jerald P. Radich, Vishnu V.B. Reddy, Neil P. Shah, Paul J. Shami, B. Douglas Smith, David S. Snyder, Meir Wetzler and Furhan Yunus

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Jerald P. Radich, Michael Deininger, Camille N. Abboud, Jessica K. Altman, Ellin Berman, Ravi Bhatia, Bhavana Bhatnagar, Peter Curtin, Daniel J. DeAngelo, Jason Gotlib, Gabriela Hobbs, Madan Jagasia, Hagop M. Kantarjian, Lori Maness, Leland Metheny, Joseph O. Moore, Arnel Pallera, Philip Pancari, Mrinal Patnaik, Enkhtsetseg Purev, Michal G. Rose, Neil P. Shah, B. Douglas Smith, David S. Snyder, Kendra L. Sweet, Moshe Talpaz, James Thompson, David T. Yang, Kristina M. Gregory and Hema Sundar

Chronic myeloid leukemia (CML) is defined by the presence of Philadelphia chromosome (Ph), resulting from a reciprocal translocation between chromosomes 9 and 22 [t(9;22] that gives rise to a BCR-ABL1 fusion gene. CML occurs in 3 different phases (chronic, accelerated, and blast phase) and is usually diagnosed in the chronic phase. Tyrosine kinase inhibitor (TKI) therapy is a highly effective first-line treatment option for all patients with newly diagnosed chronic phase CML (CP-CML). The selection TKI therapy should be based on the risk score, toxicity profile of TKI, patient's age, ability to tolerate therapy, and the presence of comorbid conditions. This manuscript discusses the recommendations outlined in the NCCN Guidelines for the diagnosis and management of patients with CP-CML.

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Ruben Mesa, Catriona Jamieson, Ravi Bhatia, Michael W. Deininger, Aaron T. Gerds, Ivana Gojo, Jason Gotlib, Krishna Gundabolu, Gabriela Hobbs, Rebecca B. Klisovic, Patricia Kropf, Sanjay R. Mohan, Stephen Oh, Eric Padron, Nikolai Podoltsev, Daniel A. Pollyea, Raajit Rampal, Lindsay A. M. Rein, Bart Scott, David S. Snyder, Brady L. Stein, Srdan Verstovsek, Martha Wadleigh, Eunice S. Wang, Mary Anne Bergman, Kristina M. Gregory and Hema Sundar

Myelofibrosis (MF), polycythemia vera (PV), and essential thrombocythemia (ET) are a group of heterogeneous disorders of the hematopoietic system collectively known as Philadelphia chromosome–negative myeloproliferative neoplasms (MPNs). The diagnosis and the management of patients with MPNs have evolved since the identification of mutations that activate the JAK pathway (JAK2, CALR, and MPL mutations) and the development of targeted therapies has resulted in significant improvements in disease-related symptoms and quality of life. This manuscript discusses the recommendations outlined in the NCCN Guidelines for the diagnostic workup of MPN (MF, PV, and ET), risk stratification, treatment, and supportive care strategies for the management of MF.

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Susan O’Brien, Jerald P. Radich, Camille N. Abboud, Mojtaba Akhtari, Jessica K. Altman, Ellin Berman, Peter Curtin, Daniel J. DeAngelo, Michael Deininger, Steven Devine, Amir T. Fathi, Jason Gotlib, Madan Jagasia, Patricia Kropf, Joseph O. Moore, Arnel Pallera, Vishnu VB. Reddy, Neil P. Shah, B. Douglas Smith, David S. Snyder, Meir Wetzler, Kristina Gregory and Hema Sundar

Chronic myelogenous leukemia (CML) is usually diagnosed in the chronic phase. Untreated chronic phase CML will eventually progress to advanced phase (accelerated or blast phase) CML. Tyrosine kinase inhibitors (TKIs) have been shown to induce favorable response rates in patients with accelerated and blast phase CML. The addition of TKIs to chemotherapy has also been associated with improved outcomes in patients with blast phase CML. Allogeneic hematopoietic stem cell transplant remains a potentially curative option for patients with advanced phase CML, although treatment with a course of TKIs will be beneficial as a bridge to transplant. This manuscript discusses the recommendations outlined in the NCCN Guidelines for the diagnosis and management of patients with advanced phase CML.

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Susan O’Brien, Jerald P. Radich, Camille N. Abboud, Mojtaba Akhtari, Jessica K. Altman, Ellin Berman, Daniel J. DeAngelo, Michael Deininger, Steven Devine, Amir T. Fathi, Jason Gotlib, Madan Jagasia, Patricia Kropf, Joseph O. Moore, Arnel Pallera, Javier Pinilla-Ibarz, Vishnu VB. Reddy, Neil P. Shah, B. Douglas Smith, David S. Snyder, Meir Wetzler, Kristina Gregory and Hema Sundar

The 2014 NCCN Clinical Practice Guidelines in Oncology for Chronic Myelogenous Leukemia recommend quantitative reverse-transcription polymerase chain reaction (QPCR) standardized to International Scale (IS) as the preferred method for monitoring molecular response to tyrosine kinase inhibitor (TKI) therapy. A BCR-ABL1 transcript level of 10% or less (IS) is now included as the response milestone at 3 and 6 months. Change of therapy to an alternate TKI is recommended for patients with BCR-ABL1 transcript levels greater than 10% (IS) at 3 months after primary treatment with imatinib. Continuing the same dose of TKI or switching to an alternate TKI are options for patients with BCR-ABL1 transcript levels greater than 10% (IS) at 3 months after primary treatment with dasatinib or nilotinib. The guidelines recommend 6-month evaluation with QPCR (IS) for patients with BCR-ABL1 transcript levels greater than 10% at 3 months. Monitoring with QPCR (IS) every 3 months is recommended for all patients, including those who meet response milestones at 3, 6, 12, and 18 months (BCR-ABL1 transcript level ≤10% [IS] at 3 and 6 months, complete cytogenetic response at 12 and 18 months).

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Jason Gotlib, Aaron T. Gerds, Prithviraj Bose, Mariana C. Castells, Michael W. Deininger, Ivana Gojo, Krishna Gundabolu, Gabriela Hobbs, Catriona Jamieson, Brandon McMahon, Sanjay R. Mohan, Vivian Oehler, Stephen Oh, Eric Padron, Philip Pancari, Nikolaos Papadantonakis, Animesh Pardanani, Nikolai Podoltsev, Raajit Rampal, Erik Ranheim, Lindsay Rein, David S. Snyder, Brady L. Stein, Moshe Talpaz, Swapna Thota, Martha Wadleigh, Katherine Walsh, Mary Anne Bergman and Hema Sundar

Mastocytosis is a group of heterogeneous disorders resulting from the clonal proliferation of abnormal mast cells and their accumulation in the skin and/or in various extracutaneous organs. Systemic mastocytosis is the most common form of mastocytosis diagnosed in adults, characterized by mast cell infiltration of one or more extracutaneous organs (with or without skin involvement). The identification of KIT D816V mutation and the emergence of novel targeted therapies have significantly improved the diagnosis and treatment of systemic mastocytosis. However, certain aspects of clinical care, particularly the diagnosis, assessment, and management of mediator-related symptoms continue to present challenges. This manuscript discusses the recommendations outlined in the NCCN Guidelines for the diagnosis and management of patients with systemic mastocytosis.

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Arnel Pallera, Jessica K. Altman, Ellin Berman, Camille N. Abboud, Bhavana Bhatnagar, Peter Curtin, Daniel J. DeAngelo, Jason Gotlib, R. Tanner Hagelstrom, Gabriela Hobbs, Madan Jagasia, Hagop M. Kantarjian, Patricia Kropf, Leland Metheny, Joseph O. Moore, Evelena Ontiveros, Enkhtsetseg Purev, Albert Quiery, Vishnu V.B. Reddy, Michal G. Rose, Neil P. Shah, B. Douglas Smith, David S. Snyder, Kendra L. Sweet, Raoul Tibes, David T. Yang, Kristina Gregory, Hema Sundar, Michael Deininger and Jerald P. Radich

The NCCN Guidelines for Chronic Myeloid Leukemia (CML) provide recommendations for the management of chronic-phase and advanced-phase CML in adult patients. The median age of disease onset is 67 years. However, because CML occurs in all age groups, clinical care teams should be prepared to address issues relating to fertility and pregnancy with patients who are of reproductive age at the time of diagnosis. CML is relatively rare in children and there are no evidence-based recommendations for the management of CML in pediatric population. These NCCN Guidelines Insights discuss special considerations for the management of CML during pregnancy and for the management of CML in the pediatric population.