淋巴结高内皮血管的组织分子结构特征及其在口腔癌和转移中的意义

Chandrasekar Poosarla, A. R. Rajendra Santosh, Swetha Gudiseva, Indira Meda, Venkata Reddy Baddam
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引用次数: 3

摘要

分子癌症研究的重点是确定诊断、筛选和转移指标,并监测治疗反应。肿瘤细胞和淋巴细胞的迁移是肿瘤转移的重要因素。高内皮血管是在淋巴器官血管中发现的特殊组织学结构,它允许淋巴细胞迁移。近几十年来,高内皮血管在癌症转移研究中的作用得到了重视。本文综述了淋巴结高内皮小静脉(hev)的组织学和分子结构,并阐述了hev在口腔癌转移中的作用,特别是口腔和咽鳞状细胞癌。本文的文献检索自建校至2015年5月的Medline/PubMed、CINAHL plus、灰色文献等数据源。使用免费文本和与本论文标题相关的医学主题标题进行搜索。仅包括支持论文目标的搜索结果全文手稿和以英文撰写的论文。hev是在淋巴细胞中发现的独特结构,主要协助淋巴细胞从血流迁移到淋巴结。了解HEV的组织分子特征将使研究人员能够在癌症组织中开发新的治疗方法。
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Histomolecular Structural Aspects of High Endothelial Vessels in Lymph Node and Its Significance in Oral Cancer and Metastasis
Molecular cancer research studies focus on identifying diagnostic, screening, and metastatic indicators, and monitoring therapeutic responses. Migration of tumor cells and lymphocytes are important aspects in metastasis. High endothelial vessels are specialized histological structures identified in the blood vessels in lymphoid organs, which allow the migration of lymphocytes. In the recent decades, the role of high endothelial vessels is being addressed in cancer metastatic research. This review article is to highlight the histological and molecular structural aspects of high endothelial venules (HEVs) in the lymph node, and to demonstrate the role of HEVs in oral cancer metastasis, specifically oral and pharyngeal squamous cell carcinoma. The literature for the present paper were searched from the data sources such as Medline/PubMed, CINAHL plus, and gray literature sources from inception to May 2015. Searches were conducted using both free texts and medical subject headings related to the title of the present paper. Only the full text manuscripts of the search results that support the objective(s) of the paper and papers written in English were included. HEVs are unique structures that are identified in the lymphocytes and primarily assist in the lymphocytic migration from the blood stream into the lymph node. Understanding the histomolecular characteristics of HEV will allow researchers to develop novel therapeutic approaches in cancer tissues.
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