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[Expressions of E-cadherin in non-small cell lung cancer and it correlation with prognosis].

G. Qiao, Yi-Long Lung Cancer Wu, Wei Ou, Xue Yang, Wen Zhong, Jia Lin, Jian Zhao, Dan Xie, Xin‐Yuan Guan

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Abstract

OBJECTIVE: This study was to clarify E-cadherin expressions in non-small cell lung cancer (NSCLC) and its correlation with patients' prognosis. METHODS: Tissue microarrays (TMAs) containing specimens from 365 different NSCLC were constructed, covering all stages and almost all histological types of this disease. Slides were immunohistochemically stained with antibodies against E-cadherin. Expression pattern of the protein was analyzed with relation to the clinicopathological. Correlations of the results with patients' overall survival were also examined. RESULTS: Immunohistochemical staining revealed that E-cadherin protein was localized mainly on membranes and the cytoplasm of NSCLC tumors cells. Reduced E-cadherin expression was evident in 32.1%. Reduced E-cadherin expression significantly correlated with lymph nodes metastasis (chi(2) = 16.430, P = 0.001), histological dedifferentiation (chi(2) = 9.243, P = 0.010) and advanced clinical stage (chi(2) = 9.421, P = 0.024). There was no significant difference in E-cadherin expression between squamous cell carcinoma and adenocarcinoma. E-cadherin reduced expression correlated with a poor prognosis (P < 0.0001) in univariate analysis. Multivariate analysis showed a significantly lower survival probability for patients with reduced E-cadherin (P < 0.001), and E-cadherin was an independent prognostic factor for survival of NSCLC patients. CONCLUSIONS: It suggests that dysfunction of E-cadherin has an important impact in the progression of lung cancer. As an independent prognostic factor, expression of E-cadherin can predict outcome of different group, together with conventional prognostic factors, and subsequently make appropriate management.

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OBJECTIVE: This study was to clarify E-cadherin expressions in non-small cell lung cancer (NSCLC) and its correlation with patients' prognosis. METHODS: Tissue microarrays (TMAs) containing specimens from 365 different NSCLC were constructed, covering all stages and almost all histological types of this disease. Slides were immunohistochemically stained with antibodies against E-cadherin. Expression pattern of the protein was analyzed with relation to the clinicopathological. Correlations of the results with patients' overall survival were also examined. RESULTS: Immunohistochemical staining revealed that E-cadherin protein was localized mainly on membranes and the cytoplasm of NSCLC tumors cells. Reduced E-cadherin expression was evident in 32.1%. Reduced E-cadherin expression significantly correlated with lymph nodes metastasis (chi(2) = 16.430, P = 0.001), histological dedifferentiation (chi(2) = 9.243, P = 0.010) and advanced clinical stage (chi(2) = 9.421, P = 0.024). There was no significant difference in E-cadherin expression between squamous cell carcinoma and adenocarcinoma. E-cadherin reduced expression correlated with a poor prognosis (P < 0.0001) in univariate analysis. Multivariate analysis showed a significantly lower survival probability for patients with reduced E-cadherin (P < 0.001), and E-cadherin was an independent prognostic factor for survival of NSCLC patients. CONCLUSIONS: It suggests that dysfunction of E-cadherin has an important impact in the progression of lung cancer. As an independent prognostic factor, expression of E-cadherin can predict outcome of different group, together with conventional prognostic factors, and subsequently make appropriate management.

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Available abstract

OBJECTIVE: This study was to clarify E-cadherin expressions in non-small cell lung cancer (NSCLC) and its correlation with patients' prognosis. METHODS: Tissue microarrays (TMAs) containing specimens from 365 different NSCLC were constructed, covering all stages and almost all histological types of this disease. Slides were immunohistochemically stained with antibodies against E-cadherin. Expression pattern of the protein was analyzed with relation to the clinicopathological. Correlations of the results with patients' overall survival were also examined. RESULTS: Immunohistochemical staining revealed that E-cadherin protein was localized mainly on membranes and the cytoplasm of NSCLC tumors cells. Reduced E-cadherin expression was evident in 32.1%. Reduced E-cadherin expression significantly correlated with lymph nodes metastasis (chi(2) = 16.430, P = 0.001), histological dedifferentiation (chi(2) = 9.243, P = 0.010) and advanced clinical stage (chi(2) = 9.421, P = 0.024). There was no significant difference in E-cadherin expression between squamous cell carcinoma and adenocarcinoma. E-cadherin reduced expression correlated with a poor prognosis (P < 0.0001) in univariate analysis. Multivariate analysis showed a significantly lower survival probability for patients with reduced E-cadherin (P < 0.001), and E-cadherin was an independent prognostic factor for survival of NSCLC patients. CONCLUSIONS: It suggests that dysfunction of E-cadherin has an important impact in the progression of lung cancer. As an independent prognostic factor, expression of E-cadherin can predict outcome of different group, together with conventional prognostic factors, and subsequently make appropriate management.

Key concepts: Medicine, Cadherin, Tissue microarray, Immunohistochemistry, Lung cancer, Adenocarcinoma, Stage (stratigraphy), Pathology

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