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Richard T. Hoppe, Ranjana H. Advani, Weiyun Z. Ai, Richard F. Ambinder, Celeste M. Bello, Philip J. Bierman, Kristie A. Blum, Bouthaina Dabaja, Ysabel Duron, Andres Forero, Leo I. Gordon, Francisco J. Hernandez-Ilizaliturri, Ephraim P. Hochberg, David G. Maloney, David Mansur, Peter M. Mauch, Monika Metzger, Joseph O. Moore, David Morgan, Craig H. Moskowitz, Matthew Poppe, Barbara Pro, Lawrence Weiss, Jane N. Winter and Joachim Yahalom

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David S. Ettinger, Wallace Akerley, Gerold Bepler, Matthew G. Blum, Andrew Chang, Richard T. Cheney, Lucian R. Chirieac, Thomas A. D'Amico, Todd L. Demmy, Apar Kishor P. Ganti, Ramaswamy Govindan, Frederic W. Grannis Jr., Thierry Jahan, Mohammad Jahanzeb, David H. Johnson, Anne Kessinger, Ritsuko Komaki, Feng-Ming Kong, Mark G. Kris, Lee M. Krug, Quynh-Thu Le, Inga T. Lennes, Renato Martins, Janis O'Malley, Raymond U. Osarogiagbon, Gregory A. Otterson, Jyoti D. Patel, Katherine M. Pisters, Karen Reckamp, Gregory J. Riely, Eric Rohren, George R. Simon, Scott J. Swanson, Douglas E. Wood and Stephen C. Yang

OverviewLung cancer is the leading cause of cancer-related death in the United States. An estimated 219,440 new cases (116,090 men; 103,350 women) of lung and bronchus cancer were diagnosed in 2009, and 159,390 deaths (88,900 men; 70,490 women) occurred from the disease.1 Only 15% of all lung cancer patients are alive 5 years or more after diagnosis (http://seer.cancer.gov/statfacts/html/lungb.html). Common symptoms of lung cancer include cough, dyspnea, weight loss, and chest pain; symptomatic patients are more likely to have chronic obstructive pulmonary disease.The primary risk factor for lung cancer is smoking, which accounts for more than 85% of all lung cancer-related deaths.2 The risk for lung cancer increases with the number of cigarettes smoked per day and the number of years spent smoking. In addition to the hazard of first-hand smoke, exposed nonsmokers have an increased relative risk for developing lung cancer.3 Radon gas, a radioactive gas that is produced by the decay of radium 226, is the second leading cause of lung cancer.4 The decay of this isotope leads to the production of substances that emit alpha-particles, which may cause cell damage and therefore increase the potential for malignant transformation. Data suggest that postmenopausal women who smoke or are former smokers should not undergo hormone replacement therapy, because it increases the risk for death from non–small cell lung cancer (NSCLC).5Asbestos, a mineral compound that breaks into small airborne shards, is a known carcinogen that increases the risk for lung cancer in people exposed to the airborne fibers,...
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David S. Ettinger, Wallace Akerley, Gerold Bepler, Matthew G. Blum, Andrew Chang, Richard T. Cheney, Lucian R. Chirieac, Thomas A. D'Amico, Todd L. Demmy, Ramaswamy Govindan, Frederic W. Grannis Jr., Thierry Jahan, David H. Johnson, Anne Kessinger, Ritsuko Komaki, Feng-Ming Kong, Mark G. Kris, Lee M. Krug, Quynh-Thu Le, Inga T. Lennes, Renato Martins, Janis O'Malley, Raymond U. Osarogiagbon, Gregory A. Otterson, Jyoti D. Patel, Katherine M. Pisters, Karen Reckamp, Gregory J. Riely, Eric Rohren, Scott J. Swanson, Douglas E. Wood and Stephen C. Yang

Overview Masses in the anterior mediastinum include neoplasms (e.g., thymomas, lymphomas, thymic carcinomas, thymic carcinoids, thymolipomas, germ cell tumors, parathyroid adenomas) or nonneoplastic conditions (e.g., intrathoracic goiter, thymic cysts, lymphangiomas, aortic aneurysms).1,2 Thymomas are the most common tumor in the anterior mediastinum.1,3,4 Many mediastinal masses are benign, especially those occurring in asymptomatic patients; however, symptomatic patients often have malignant mediastinal lesions. These guidelines outline the evaluation, treatment, and management of thymomas and thymic carcinomas (see Thymic Masses, opposite column). The WHO histologic classification system can be used to distinguish among thymomas, thymic carcinomas, and thymic carcinoids.3 Lymphomas typically manifest as generalized disease but can also be primary anterior mediastinal lesions (i.e., nodular sclerosing Hodgkin disease and non-Hodgkin's lymphomas [large B-cell lymphoma and lymphoblastic lymphoma]); patients typically have lymphadenopathy [see the NCCN Clinical Practice Guidelines in Oncology {NCCN Guidelines} for Non-Hodgkin's Lymphomas and Hodgkin Lymphoma].2,5 Thymic carcinoids are rare tumors that are discussed in the NCCN Guidelines for Neuroendocrine Tumors. Teratomas are discussed in the NCCN Guidelines for Testicular Cancer. (To view the most recent version of these guidelines, visit the NCCN Web site at www.NCCN.org.) Thymic Masses All patients with a mediastinal mass should undergo studies to determine the type of mass and extent of disease; these tests should include chest CT with contrast, fludeoxyglucose (FDG)–PET, radiolabeled octreotide scan (optional), complete blood cell counts, and platelets. Pulmonary function tests and MRI of the chest can also be done if clinically indicated. On CT, thymoma can look like malignant mesothelioma; however,...
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Margaret R. O'Donnell, Martin S. Tallman, Camille N. Abboud, Jessica K. Altman, Frederick R. Appelbaum, Daniel A. Arber, Vijaya Bhatt, Dale Bixby, William Blum, Steven E. Coutre, Marcos De Lima, Amir T. Fathi, Melanie Fiorella, James M. Foran, Steven D. Gore, Aric C. Hall, Patricia Kropf, Jeffrey Lancet, Lori J. Maness, Guido Marcucci, Michael G. Martin, Joseph O. Moore, Rebecca Olin, Deniz Peker, Daniel A. Pollyea, Keith Pratz, Farhad Ravandi, Paul J. Shami, Richard M. Stone, Stephen A. Strickland, Eunice S. Wang, Matthew Wieduwilt, Kristina Gregory and Ndiya Ogba

Acute myeloid leukemia (AML) is the most common form of acute leukemia among adults and accounts for the largest number of annual deaths due to leukemias in the United States. This portion of the NCCN Guidelines for AML focuses on management and provides recommendations on the workup, diagnostic evaluation, and treatment options for younger (age <60 years) and older (age ≥60 years) adult patients.

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Richard T. Hoppe, Ranjana H. Advani, Weiyun Z. Ai, Richard F. Ambinder, Patricia Aoun, Celeste M. Bello, Cecil M. Benitez, Karl Bernat, Philip J. Bierman, Kristie A. Blum, Robert Chen, Bouthaina Dabaja, Andres Forero, Leo I. Gordon, Francisco J. Hernandez-Ilizaliturri, Ephraim P. Hochberg, Jiayi Huang, Patrick B. Johnston, Mark S. Kaminski, Vaishalee P. Kenkre, Nadia Khan, David G. Maloney, Peter M. Mauch, Monika Metzger, Joseph O. Moore, David Morgan, Craig H. Moskowitz, Carolyn Mulroney, Matthew Poppe, Rachel Rabinovitch, Stuart Seropian, Mitchell Smith, Jane N. Winter, Joachim Yahalom, Jennifer Burns, Ndiya Ogba and Hema Sundar

This portion of the NCCN Guidelines for Hodgkin lymphoma (HL) focuses on the management of classical HL. Current management of classical HL involves initial treatment with chemotherapy or combined modality therapy followed by restaging with PET/CT to assess treatment response using the Deauville criteria (5-point scale). The introduction of less toxic and more effective regimens has significantly advanced HL cure rates. However, long-term follow-up after completion of treatment is essential to determine potential long-term effects.

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Richard T. Hoppe, Ranjana H. Advani, Weiyun Z. Ai, Richard F. Ambinder, Patricia Aoun, Celeste M. Bello, Philip J. Bierman, Kristie A. Blum, Robert Chen, Bouthaina Dabaja, Ysabel Duron, Andres Forero, Leo I. Gordon, Francisco J. Hernandez-Ilizaliturri, Ephraim P. Hochberg, David G. Maloney, David Mansur, Peter M. Mauch, Monika Metzger, Joseph O. Moore, David Morgan, Craig H. Moskowitz, Matthew Poppe, Barbara Pro, Jane N. Winter, Joachim Yahalom and Hema Sundar

The NCCN Clinical Practice Guidelines in Oncology (NCCN Guidelines) for Hodgkin Lymphoma (HL) include the clinical management of classical HL and lymphocyte-predominant HL (LPHL). Major changes have been incorporated into these guidelines since their inception. In the 2012 NCCN Guidelines for HL, PET scans are not recommended for interim restaging of patients with stage I to II favorable disease. After reevaluating the available evidence on the use of interim PET imaging, the panel recommends the use of diagnostic CT scan of involved sites for interim restaging after completion of chemotherapy for this group of patients. Maintenance rituximab for 2 years is included as an option for patients with stage IB to IIB or stage III to IV LPHL treated with rituximab alone in the first-line setting. Brentuximab vedotin is included as an option for patients with progressive disease or relapsed disease after second-line chemotherapy or high-dose therapy with autologous stem cell rescue.

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Richard T. Hoppe, Ranjana H. Advani, Weiyun Z. Ai, Richard F. Ambinder, Patricia Aoun, Celeste M. Bello, Cecil M. Benitez, Philip J. Bierman, Kristie A. Blum, Robert Chen, Bouthaina Dabaja, Andres Forero, Leo I. Gordon, Francisco J. Hernandez-Ilizaliturri, Ephraim P. Hochberg, Jiayi Huang, Patrick B. Johnston, Nadia Khan, David G. Maloney, Peter M. Mauch, Monika Metzger, Joseph O. Moore, David Morgan, Craig H. Moskowitz, Carolyn Mulroney, Matthew Poppe, Rachel Rabinovitch, Stuart Seropian, Christina Tsien, Jane N. Winter, Joachim Yahalom, Jennifer L. Burns and Hema Sundar

Hodgkin lymphoma (HL) is an uncommon malignancy involving lymph nodes and the lymphatic system. Classical Hodgkin lymphoma (CHL) and nodular lymphocyte-predominant Hodgkin lymphoma are the 2 main types of HL. CHL accounts for most HL diagnosed in the Western countries. Chemotherapy or combined modality therapy, followed by restaging with PET/CT to assess treatment response using the Deauville criteria (5-point scale), is the standard initial treatment for patients with newly diagnosed CHL. Brentuximab vedotin, a CD30-directed antibody-drug conjugate, has produced encouraging results in the treatment of relapsed or refractory disease. The potential long-term effects of treatment remain an important consideration, and long-term follow-up is essential after completion of treatment.