Department of Microbiology and Immunology, Laboratory of Immunodynamics, Osaka University Graduate School of Medicine Laboratory of Immunodynamics, WPI Immunology Frontier Center, Osaka University, Osaka, Japan.
Cancer Sci. 2010 Nov;101(11):2302-8. doi: 10.1111/j.1349-7006.2010.01687.x.
Physiological recruitment of lymphocytes from the blood into lymph nodes and Peyer's patches is mediated by high endothelial venules (HEV), specialized blood vessels found in secondary lymphoid tissues except for the spleen. The HEV are distinguished from other types of blood vessels by their tall and plump endothelial cells, and by their expression of specific chemokines and adhesion molecules, which all contribute to the selective lymphocyte trafficking across these blood vessels. The development of HEV is ontogenically regulated, and they appear perinatally in the mouse. High endothelial venules can appear ectopically, for instance in chronically inflamed tissues. Given that HEV enable the efficient trafficking of lymphocytes into tissues, the induction of HEV at a tumor site could potentiate tumor-specific immune responses, and the artificial manipulation of HEV neogenesis might thus provide a new tool for cancer immunotherapy. However, the process of HEV development and the mechanisms by which the unique features of HEV are maintained are incompletely understood. In this review, we discuss the process of HEV neogenesis and development during ontogeny, and their molecular requirements for maintaining their unique characteristics under physiological conditions.
从血液中招募淋巴细胞进入淋巴结和派尔集合淋巴结是由高内皮小静脉(HEV)介导的,HEV 是一种存在于次级淋巴组织中的特殊血管,除脾脏外其他组织均有分布。与其他类型的血管相比,HEV 的内皮细胞高大而饱满,并且表达特定的趋化因子和黏附分子,所有这些都有助于淋巴细胞选择性地穿过这些血管。HEV 的发育受到胚胎发育的调控,并在小鼠中于围产期出现。HEV 可以异位出现,例如在慢性炎症组织中。鉴于 HEV 能够有效地将淋巴细胞运送到组织中,在肿瘤部位诱导 HEV 的出现可能会增强肿瘤特异性免疫反应,因此人工操纵 HEV 的新生可能为癌症免疫治疗提供一种新工具。然而,HEV 的发育过程以及维持 HEV 独特特征的机制尚不完全清楚。在这篇综述中,我们讨论了 HEV 在胚胎发生过程中的新生和发育过程,以及它们在生理条件下维持其独特特征的分子要求。