The IASLC Mesothelioma Staging Project: Proposals for Revisions of the ‘T’ Descriptors in the Forthcoming 9th Edition of the TNM Classification for Pleural Mesothelioma

Ritu R. Gill,Anna K. Nowak,Dorothy J. Giroux, Megan Eisele,Adam Rosenthal, Hedy L. Kindler,Andrea Wolf,R. Taylor Ripley,Andrea Billè,David C. Rice, Isabelle Opitz,Andreas Rimner,Marc dePerrot,Harvey I. Pass,Valerie W. Rusch,Hisao Asamura,Ramón Rami‐Porta, Luiz H. Araujo,David G. Beer, Pietro Bertoglio,Ricardo Beyruti,Souheil Boubia, Élisabeth Brambilla, Ayten Cangır,David P. Carbone,Vanessa Bolejack, Casey Connolly,Gail Darling,Frank C. Detterbeck, Daniel T. Dibaba, Xavier Benoît D’Journo,Jessica S. Donington, Wilfried Ernst Erich Eberhardt,John Edwards, Jeremy J. Erasmus,Wentao Fang, Dean A. Fennell, Kwun M. Fong,Françoise Galateau-Salle,Oliver Gautschi,Meredith Giuliani,Jin Mo Goo,Seiki Hasegawa,Emily Goren,Fred R. Hirsch, Antje Hoering, Hans Hoffman,Wayne L. Hofstetter,James Huang,Philippe Joubert,Kemp Kernstine,Keith M. Kerr,Young Tae Kim, Hong Kwan Kim, Yolande Lievens, Hui Liu, Donald E. Low, Gustavo Lyons,Heber MacMahon, Alyson Mahar,Mirella Marino,Edith M. Marom, José-María Matilla,Jan P. van Meerbeeck, Luis M. Montuenga,Andrew G. Nicholson, K. Nishimura,Meinoshin Okumura, Raymond U. Osarogiagbon,Marc de Perrot,Helmut Prosch,Enrico Ruffini,Shuji Sakai,Paul Van Schil,Navneet Singh,Francisco Suárez,Ricardo Mingarini Terra,William D. Travis, Ming‐Sound Tsao, Paula A. Ugalde,Shun‐ichi Watanabe,Ignacio I. Wistuba,Murry W. Wynes,Yasushi Yatabe,Samuel G. Armato, Lawek Berzenji,Alessandro Brunelli, Giuseppe Cardillo, Jason C. Chang,Ke-Neng Chen,Wendy A. Cooper, Pier Luigi Filosso,Liyan Jiang,Nagla Fawzy Abdel Karim, Peter J. Kneuertz, Mark Krasnik, Keiichi Kubota,Catherine Labbé,Ho Yun Lee,Eric Lim,Geoffrey Liu, Hongxu Liu,Philip C. Mack,David P. Naidich, Mizuki Nishino, Marcin Ostrowski,Charles A. Powell, Carolyn J. Presley, Paul Martin Putora,Natasha Rekhtman, Hua Ren, M. Patricia Rivera,Gaetano Rocco, Maria Teresa Ruiz Tzukazan, Robert M. Samstein, Yu Yang Soon,Kenichi Suda,Martin C. Tammemägi, L.T. Tanoue,Akif Turna, Benny Weksler,Terence M. Williams, Dawei Yang, Jeff Yang,Masaya Yotsukura, Usman Ahmad,Sarit Appel,Cecilia Brambilla, Conrad Falkson,Giuseppe Giaccone,Francesco Guerrera,Maurizio Infante,Dong Kwan Kim,Marco Lucchi,Anja C. Roden,Charles B. Simone,Mark Ferguson,Joseph S. Friedberg, Jennifer L. Sauter

Journal of thoracic oncology(2024)

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摘要
The primary tumor (T) component in the 8th edition of pleural mesothelioma (PM) staging system is based on pleural involvement and extent of invasion. Quantitative assessment of pleural tumor has been shown to be prognostic. We explored quantitative and qualitative metrics to develop recommendations for T descriptors in the upcoming 9th edition of the PM staging system.The International Association for the Study of Lung Cancer (IASLC) prospectively collected data on PM patients. Sum of maximum pleural thickness (Psum) was recorded. Optimal combinations of Psum and 8th edition cT descriptors were assessed using recursive binary splitting algorithm, with bootstrap resampling to correct for the adaptive nature of the splitting algorithm and validated in the 8th edition data. Overall survival (OS) was calculated by the Kaplan-Meier method and differences in OS assessed by the log-rank test.Of 7,338 patients submitted, 3,598 were eligible for cT analysis and 1,790 had Psum measurements. Recursive partitioning identified optimal cutpoints of Psum at 12 and 30 mm which, in combination with extent of invasion, yielded four prognostic groups for OS. Fmax >5mm indicated poor prognosis. cT4 category (based on invasion) showed similar performance to 8th edition. Three 8th edition descriptors were eliminated based on low predictive accuracy. Eighth edition pT descriptors remained valid in 9th edition analyses.Given reproducible prognostication by Psum, size criteria will be incorporated into cT1-T3 categories in the 9th edition. Current cT4 category and all pT descriptors will be maintained, with reclassification of fissural invasion as pT2.
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