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Lymphatic vessels and related factors in adenoid cystic carcinoma of the salivary gland

机译:涎腺腺样囊性癌的淋巴管及相关因素

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Adenoid cystic carcinoma of the salivary gland preferentially metastasizes to distant organs. It rarely metastasizes to lymph nodes. Recently, lymphangiogenesis has been associated with lymph node metastasis. Therefore, lymphangiogenesis in adenoid cystic carcinoma was evaluated from the number of lymphatic vessels and the expression of lymphangiogenic factors. Immunohistochemistry and molecular analysis were performed on clinical materials (29 cases for immunohistochemistry and 9 cases for molecular analysis). Normal submandibular gland was used as a negative control of lymphangiogenesis (10 cases for immunohistochemistry and 5 cases for molecular analysis). In adenoid cystic carcinoma, podoplanin-positive lymphatic vessels were small and often constricted, and localized to the tumor periphery. They did not have Ki67-positive endothelial cells. The lymphatic vessel density of the tumor did not exceed that of the salivary gland. By reverse transcriptase–polymerase chain reaction, adenoid cystic carcinoma and the salivary gland expressed vascular endothelial growth factor receptor-3 (VEGFR-3) similarly but VEGF-C and VEGF-D differently. Adenoid cystic carcinoma expressed VEGF-C, whereas the salivary gland expressed both VEGF-C and VEGF-D. VEGF-C was weak in adenoid cystic carcinoma and strong in the salivary gland. Real-time reverse transcriptase–polymerase chain reaction of VEGF-C showed that the ratio of the tumor to the salivary gland was 1 to 30 (P<0.01). Immunohistochemistry barely detected VEGF-C in adenoid cystic carcinoma. VEGF-C was expressed faintly by the tumor cells. VEGF-C and VEGF-D were detected in the serous acinar and duct cells and in the duct contents in the salivary gland. VEGFR-3 appeared to be expressed by lymphatic vessels in both adenoid cystic carcinoma and the salivary gland. These results indicate that lymphangiogenesis does not occur in adenoid cystic carcinoma. This condition would lead to the uncommon lymphatic metastasis.
机译:唾液腺腺样囊性癌优先转移至远处器官。它很少转移到淋巴结。最近,淋巴管生成与淋巴结转移有关。因此,从淋巴管的数量和淋巴管生成因子的表达来评估腺样囊性癌的淋巴管生成。对临床材料进行免疫组织化学和分子分析(免疫组织化学29例,分子分析9例)。正常的颌下腺被用作淋巴管生成的阴性对照(免疫组织化学10例,分子分析5例)。在腺样囊性癌中,podoplanin阳性淋巴管小且经常受压,并位于肿瘤周围。他们没有Ki67阳性内皮细胞。肿瘤的淋巴管密度不超过唾液腺。通过逆转录酶-聚合酶链反应,腺样囊性癌和唾液腺表达血管内皮生长因子受体3(VEGFR-3)相似,但VEGF-C和VEGF-D不同。腺样囊性癌表达VEGF-C,而唾液腺表达VEGF-C和VEGF-D。 VEGF-C在腺样囊性癌中较弱,在唾液腺中较弱。 VEGF-C的实时逆转录-聚合酶链反应显示,肿瘤与唾液腺的比例为1至30(P <0.01)。免疫组织化学在腺样囊性癌中几乎未检测到VEGF-C。肿瘤细胞微弱表达VEGF-C。在浆液性腺泡和导管细胞以及唾液腺的导管内容物中检测到VEGF-C和VEGF-D。在腺样囊性癌和唾液腺中,VEGFR-3似乎都由淋巴管表达。这些结果表明在腺样囊性癌中不发生淋巴管生成。这种情况将导致罕见的淋巴转移。

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