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淋巴引流功能及其免疫学意义:从树突状细胞归巢到疫苗设计

Lymphatic drainage function and its immunological implications: from dendritic cell homing to vaccine design.

作者信息

Swartz Melody A, Hubbell Jeffrey A, Reddy Sai T

机构信息

Institute of Bioengineering, Ecole Polytechnique Fédérale de Lausanne (EPFL), Lausanne, Switzerland.

出版信息

Semin Immunol. 2008 Apr;20(2):147-56. doi: 10.1016/j.smim.2007.11.007. Epub 2008 Jan 16.

Abstract

The slow interstitial flow that drains fluid from the blood capillaries into the lymphatic capillaries provides transport of macromolecular nutrients to cells in the interstitium. We discuss herein how this flow also provides continuous access to immune cells residing in the lymph nodes of antigens from self or from pathogens residing in the interstitium. We also address mechanisms by which dendritic cells in the periphery sense interstitial flow to home efficiently into the lymphatics after activation, and how lymphatic endothelium can be activated by this flow, including how it can act as a lymphatic morphoregulator. Further, we present concepts on how interstitial flow can be exploited with biomaterial systems to deliver antigen and adjuvant molecules directly into the lymphatics, to target dendritic cells residing in the lymph nodes rather than in the peripheral tissues, using particles that are small enough to be carried along by flow through the network structure of the interstitium. Finally, we present recent work on lymphatic and lymphoid tissue engineering, including how interstitial flow can be used as a design principle. Thus, an understanding of the physiological processes that govern transport in the interstitium guides new understanding of both immune cell interactions with the lymphatics as well as therapeutic interventions exploiting the lymphatics as a target.

摘要

从血液毛细血管向淋巴管引流液体的缓慢间质流,为将大分子营养物质输送到间质中的细胞提供了途径。在此,我们讨论这种流动如何还能使存在于淋巴结中的免疫细胞持续接触来自自身或间质中病原体的抗原。我们还探讨了外周树突状细胞感知间质流以便在激活后有效地归巢到淋巴管的机制,以及这种流动如何激活淋巴管内皮,包括其如何作为淋巴管形态调节因子发挥作用。此外,我们提出了一些概念,即如何利用生物材料系统利用间质流将抗原和佐剂分子直接输送到淋巴管中,使用足够小的颗粒通过间质的网络结构被流动携带,从而靶向存在于淋巴结而非外周组织中的树突状细胞。最后,我们介绍了淋巴和淋巴组织工程的最新研究成果,包括如何将间质流用作设计原则。因此,对控制间质中物质运输的生理过程的理解,有助于对免疫细胞与淋巴管的相互作用以及将淋巴管作为靶点的治疗干预有新的认识。

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