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淋巴系统与炎症。

Lymphatics and inflammation.

机构信息

Department of Anatomy and Cell Biology, Georg-August-University, Center of Anatomy, Goettingen, Germany.

出版信息

Curr Med Chem. 2009;16(34):4581-92. doi: 10.2174/092986709789760751.

Abstract

Inflammation is a local or systemic tissue reaction caused by external or internal stimuli with the objective to remove the noxa, inhibit its further dissemination and eventually repair damaged tissue. Blood vessels and perivascular connective tissue are important regulators of the inflammatory process. After a short initial ischemic phase, inflamed tissue is characterized by hyperaemia and increased permeability of capillaries. Therefore, blood vessels have been in the focus of inflammation research for quite some time, whereas lymphatic vessels have been neglected. Their reactivity is not immediately obvious, and, their identification within the tissue has hardly been possible until lymphatic endothelial cell (LEC)-specific molecules have been identified a few years ago. This has opened up the possibility to study lymphatics in normal and diseased tissues, and to isolate LECs for transcriptome and proteome analyses. Initial studies now provide evidence that lymphatics are not just a passive route for circulating lymphocytes, but seem to be directly involved in both the induction and the resolution of inflammation. This review provides a summary on the basics of inflammation, the structure of lymphatics and their molecular markers, human inflammation-associated diseases and their relation to lymphatics, animal models to study the interaction of lymphatics and inflammation, and finally inflammation-associated molecules expressed in LECs. The integration of lymphatics into inflammation research opens up an exciting new field with great clinical potential.

摘要

炎症是由外部或内部刺激引起的局部或全身组织反应,其目的是清除有害物质、抑制其进一步传播,并最终修复受损组织。血管和血管周围结缔组织是炎症过程的重要调节剂。在短暂的初始缺血阶段后,炎症组织的特征是充血和毛细血管通透性增加。因此,血管一直是炎症研究的焦点,而淋巴管则被忽视了。它们的反应性并不明显,而且,直到几年前才发现淋巴管内皮细胞 (LEC) 特异性分子,淋巴管在组织内的鉴定才变得可能。这为研究正常和患病组织中的淋巴管以及分离用于转录组和蛋白质组分析的 LEC 开辟了可能性。最初的研究现在提供了证据表明,淋巴管不仅仅是循环淋巴细胞的被动途径,而是似乎直接参与炎症的诱导和消退。这篇综述概述了炎症的基础知识、淋巴管的结构及其分子标记物、与淋巴管相关的人类炎症相关疾病、用于研究淋巴管与炎症相互作用的动物模型,以及最后在 LEC 中表达的与炎症相关的分子。将淋巴管纳入炎症研究将开辟一个具有巨大临床潜力的令人兴奋的新领域。

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