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◆ Endocrine Pathology2026-05-21· Mitotic index

Three-Tier Prognostic Stratification of Lung Carcinoids (NET G1-G2-G3) by Multivariable, Data-Driven Integration of Ki-67 and Mitotic Count

Giulia Orlando, Valentina Veronesi, Eleonora Duregon, Vanessa Zambelli, Francesco Leo, Elisa Carla Fontana, Enrico Ruffini, Luisella Righi, Giuseppe Pelosi, Marco Volante, Mauro Papotti

原始摘要(英文原文)· Original abstract
Pulmonary neuroendocrine tumors (NETs) include typical and atypical carcinoids, corresponding to low- and intermediate-grade malignancies. Integration of necrosis, mitotic count per 2 mm² (MC), and Ki-67 index, a desirable criterion in the current WHO scheme, may enable a classification framework beyond conventional histology. We used a clustering method for mixed-type data, including necrosis, MC and Ki-67 index, on a single-institution cohort of 358 typical and 125 atypical carcinoids with long-term follow-up. An external validation series of 259 additional carcinoids was used. A three-cluster solution was selected, yielding a tiered prognostic stratification model, that included NETG1 (383 cases; mean MC: 0.7; necrosis: 8.1% of cases; mean Ki-67 index: 2.5%), NETG2 (77 cases; mean MC 2.3; necrosis 27.3%; mean Ki-67: 11.4%), and NETG3 (23 cases; mean MC: 5.5; necrosis 60.9%; mean Ki-67: 25.1%). The model was independent of histological classification. Ki-67 index was the strongest discriminator, distinguishing NET G1 tumors with a Ki-67 index < 6% from NET G3 tumors (Ki-67 > 16%), while MC contributed to identifying a subset of NET G2 tumors. The selected cut-offs were derived through a statistical approach evaluating hundreds of decision-tree configurations, following a sequential algorithm from Ki-67 to MC, with 6-16% identified as the most informative Ki-67 range for intermediate stratification. Necrosis added no discriminative value, as it was closely correlated with the Ki-67 index and MC. This classification corresponded to a progressive worsening of overall survival and, more significantly, relapse-free survival, and it was transferable to the external cohort. In conclusion, based on routinely available pathological parameters, this model provides a practical and reproducible classification of resected pulmonary NETs, overcoming the traditional typical-atypical carcinoid dichotomy and is potentially applicable to biopsy material.
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Three-Tier Prognostic Stratification of Lung Carcinoids (NET G1-G2-G3) by Multivariable, Data-Driven Integration of Ki-67 and Mitotic Count — 科研速览 Science Skim