Abstract
Afferent lymphatics mediate the transport of antigen and leukocytes, especially of dendritic cells (DCs) and T cells, from peripheral tissues to draining lymph nodes (dLNs). As such they play important roles in the induction and regulation of adaptive immunity. Over the past 15 years, great advances in our understanding of leukocyte trafficking through afferent lymphatics have been made through time-lapse imaging studies performed in tissue explants and in vivo, allowing to visualize this process with cellular resolution. Intravital imaging has revealed that intralymphatic leukocytes continue to actively migrate once they have entered into lymphatic capillaries, as a consequence of the low flow conditions present in this compartment. In fact, leukocytes spend considerable time migrating, patrolling and interacting with the lymphatic endothelium or with other intralymphatic leukocytes within lymphatic capillaries. Cells typically only start to detach once they arrive in downstream-located collecting vessels, where vessel contractions contribute to enhanced lymph flow. In this review, we will introduce the biology of afferent lymphatic vessels and report on the presumed significance of DC and T cell migration via this route. We will specifically highlight how time-lapse imaging has contributed to the current model of lymphatic trafficking and the emerging notion that - besides transport - lymphatic capillaries exert additional roles in immune modulation. Show more
Permanent link
https://doi.org/10.3929/ethz-b-000514583Publication status
publishedExternal links
Journal / series
Immunological ReviewsVolume
Pages / Article No.
Publisher
WileySubject
afferent lymphatics; dendritic cells; ex vivo imaging; in vivo imaging; lymphatic endothelial cells; migration; T cells; TraffickingOrganisational unit
03816 - Halin Winter, Cornelia / Halin Winter, Cornelia
Funding
182528 - Interactions of Leukocytes within and with Lymphatic Vessels: Elucidating their Impact on Immune Regulation and Leukocyte Migration (SNF)
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