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Angiogenesis and phenotypic alteration of alveolar capillary endothelium in areas of neoplastic cell spread in primary lung adenocarcinoma
Author(s) -
Jin Enjing,
Ghazizadeh Mohammad,
Fujiwara Masakazu,
Nagashima Mikio,
Shimizu Hajime,
Ohaki Yoshiharu,
Arai Satoru,
Gomibuchi Makoto,
Takemura Tamiko,
Kawanami Oichi
Publication year - 2001
Publication title -
pathology international
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.73
H-Index - 74
eISSN - 1440-1827
pISSN - 1320-5463
DOI - 10.1046/j.1440-1827.2001.01264.x
Subject(s) - pathology , adenocarcinoma , lung , angiogenesis , phenotype , endothelium , medicine , cell , biology , cancer research , cancer , biochemistry , genetics , gene
Normal alveolar capillary endothelium is quiescent in nature and displays anticoagulant thrombomodulin (TM) on its surface. The cytoplasms of these endothelial cells are ultrastructurally non‐fenestrated type, and they barely express von Willebrand factor (vWf). Alveolar fibrosis is accompanied by a capillary endothelium reactive for vWf, and a loss of TM expression. In primary lung adenocarcinoma, neovascularization occurs in association with alveolar fibrosis. In order to study basic factors related to angiogenesis and phenotypic changes of the capillaries located in tumor‐bearing alveolar walls, we examined 37 primary lung adenocarcinomas with electron microscopy and confocal laser scanning microscopy with antibodies for TM, vWf, vascular endothelial growth factor (VEGF), and its receptors (KDR and Flt‐1), and proliferating markers (Ki‐67/proliferating cell nuclear antigen). Tissues microdissected specifically from alveolar walls were used for reverse transcription–polymerase chain reaction (RT–PCR) to assess expressions of mRNA isoforms of VEGF and its receptors. New capillary branching was found by ultrastructural study in the alveolar walls in 12% of the patients. Nuclei of the capillary endothelial cells were reactive for proliferating cell markers. Endothelial fenestrae were developed in 65% of the patients, TM reactivity was lost in the alveolar capillaries, and their cell cytoplasms obtained a reactivity for vWf through a transitional mosaic‐like distribution pattern of both antigens. Besides cytoplasmic VEGF expression in neoplastic cells, tumor‐bearing alveolar walls showed significant expression of mRNA of VEGF 165 and KDR. These findings imply that angiogenesis and phenotypic changes of the alveolar capillaries are closely related to a higher expression of tumor‐associated VEGF 165 and of KDR in the alveolar walls in primary lung adenocarcinoma.

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