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淋巴细胞在体内通过单个淋巴结迁移的生理学。

The physiology of lymphocyte migration through the single lymph node in vivo.

作者信息

Young A J

机构信息

The Basel Institute for Immunology, Grenzacherstrasse 487, Basel, CH4005, Switzerland.

出版信息

Semin Immunol. 1999 Apr;11(2):73-83. doi: 10.1006/smim.1999.0163.

Abstract

Lymphocytes are mobile cells, continually recirculating between the blood and the tissues via the lymph. In order to maintain immune surveillance, the majority of lymphocyte traffic occurs through lymph nodes in vivo. Although a great deal of work has been done to elucidate the molecular mechanisms whereby lymphocytes leave the blood and enter the lymph node, lymphocyte traffic also requires that the lymphocyte successfully transit extravascular tissue and enter the lymph following transendothelial migration. The regulation of cell movement through lymph nodes, specific cellular positioning within the nodes, and eventual entry into the efferent lymphatics are poorly understood. The process of lymphocyte recirculation occurs in a physiological background, and in vivo systems have been particularly useful in uncovering the nuances of the process. This review summarizes available data about the recirculation of lymphocytes through the lymph node and the interaction of recirculating lymphocyte pools in vivo. The importance of factors in afferent lymph, the specific distribution of extracellular matrix proteins, potential soluble regulators of cell traffic, and evidence for an active role of lymphatic endothelial cells in the regulation of lymphocyte traffic are discussed. It seems likely that future work will need to be directed at determining the relative importance of these post-transendothelial migration regulators of lymphocyte traffic.

摘要

淋巴细胞是可移动的细胞,通过淋巴不断地在血液和组织之间循环。为了维持免疫监视,体内大多数淋巴细胞运输是通过淋巴结进行的。尽管已经做了大量工作来阐明淋巴细胞离开血液并进入淋巴结的分子机制,但淋巴细胞运输还要求淋巴细胞在跨内皮迁移后成功穿过血管外组织并进入淋巴。对细胞通过淋巴结的移动调节、细胞在淋巴结内的特定定位以及最终进入输出淋巴管的了解还很少。淋巴细胞再循环过程发生在生理背景下,体内系统在揭示该过程的细微差别方面特别有用。本综述总结了关于淋巴细胞通过淋巴结再循环以及体内再循环淋巴细胞池相互作用的现有数据。讨论了传入淋巴中各种因素的重要性、细胞外基质蛋白的特定分布、细胞运输的潜在可溶性调节因子以及淋巴管内皮细胞在淋巴细胞运输调节中发挥积极作用的证据。未来的工作可能需要致力于确定这些淋巴细胞运输跨内皮迁移后调节因子的相对重要性。

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