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Dendritic Cells and T Cells Interact Within Murine Afferent Lymphatic Capillaries.


ABSTRACT: Afferent lymphatic vessels contribute to immunity by transporting antigen and leukocytes to draining lymph nodes (LNs) and are emerging as new players in the regulation of peripheral tolerance. Performing intravital microscopy in inflamed murine ear skin we found that migrating dendritic cells (DCs) and antigen-experienced effector T cells spend considerable time arresting or clustering within afferent lymphatic capillaries. We also observed that intralymphatic T cells frequently interacted with DCs. When imaging polyclonal T cells during an ongoing contact-hypersensitivity response, most intralymphatic DC-T cell interactions were short-lived. Conversely, during a delayed-type-hypersensitivity response, cognate antigen-bearing DCs engaged in long-lived MHCII-(I-A/I-E)-dependent interactions with antigen-specific T cells. Long-lived intralymphatic DC-T cell interactions reduced the speed of DC crawling but did not delay overall DC migration to draining LNs. While further consequences of these intralymphatic interactions still need to be explored, our findings suggest that lymphatic capillaries represent a unique compartment in which adaptive immune interaction and modulation occur.

SUBMITTER: Hunter MC 

PROVIDER: S-EPMC6440485 | biostudies-literature | 2019

REPOSITORIES: biostudies-literature

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Dendritic Cells and T Cells Interact Within Murine Afferent Lymphatic Capillaries.

Hunter Morgan Campbell MC   Teijeira Alvaro A   Montecchi Riccardo R   Russo Erica E   Runge Peter P   Kiefer Friedemann F   Halin Cornelia C  

Frontiers in immunology 20190322


Afferent lymphatic vessels contribute to immunity by transporting antigen and leukocytes to draining lymph nodes (LNs) and are emerging as new players in the regulation of peripheral tolerance. Performing intravital microscopy in inflamed murine ear skin we found that migrating dendritic cells (DCs) and antigen-experienced effector T cells spend considerable time arresting or clustering within afferent lymphatic capillaries. We also observed that intralymphatic T cells frequently interacted with  ...[more]

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