Analysis of mouse dendritic cell migration in vivo upon subcutaneous and intravenous injection
- 1 October 1999
- journal article
- research article
- Published by Wiley in Immunology
- Vol. 98 (2) , 181-188
- https://doi.org/10.1046/j.1365-2567.1999.00850.x
Abstract
Dendritic cells (DC) have an increasingly important role in vaccination therapy; therefore, this study sought to determine the migratory capacity and immunogenic function of murine bone‐marrow (BM)‐derived DC following subcutaneous (s.c.) and intravenous (i.v.) injection in vivo. DC were enriched from BM cultures using metrizamide. Following centrifugation, the low‐buoyant density cells, referred to throughout as DC, were CD11chigh, Iab high, B7‐1high and B7‐2high and potently activated alloreactive T cells in mixed lymphocyte reactions (MLR). In contrast, the high‐density cells expressed low levels of the above markers, comprised mostly of granulocytes based on GR1 expression, and were poor stimulators in MLR. Following s.c. injection of fluorescently labelled cells into syngeneic recipient mice, DC but not granulocytes migrated to the T‐dependent areas of draining lymph nodes (LN). DC numbers in LN were quantified by flow‐cytometric analysis, on 1, 2, 3, 5 and 7 days following DC transfer. Peak numbers of around 90 DC per draining LN were found at 2 days. There was very little migration of DC to non‐draining LN, thymus or spleen at any of the time‐points studied. In contrast, following i.v. injection, DC accumulated mainly in the spleen, liver and lungs of recipient mice but were largely absent from peripheral LN and thymus. The ability of DC to induce T‐cell‐mediated immune responses was examined using trinitrobenzenesulphate (TNBS)‐derivatized DC (TNBS‐DC) to sensitize for contact hypersensitivity responses (CHS) in naive syngeneic recipients. Following s.c. injection, as few as 105 TNBS‐DC, but not TNBS‐granulocytes, sensitized for CHS responses. However, the same number of TNBS‐DC failed to induce CHS following i.v. injection. In summary, this study provides new and quantitative data on the organ specific migration of murine BM‐derived DC following s.c. and i.v. injection. The demonstration that the route of DC administration determines the potency of CHS induction, strongly suggests that the route of immunization should be considered in the design of vaccine protocols using DC.Keywords
This publication has 30 references indexed in Scilit:
- Origin, maturation and antigen presenting function of dendritic cellsCurrent Opinion in Immunology, 1997
- Generation of large numbers of dendritic cells from mouse bone marrow cultures supplemented with granulocyte/macrophage colony-stimulating factor.The Journal of Experimental Medicine, 1992
- GM-CSF and TNF-α cooperate in the generation of dendritic Langerhans cellsNature, 1992
- The Dendritic Cell System and its Role in ImmunogenicityAnnual Review of Immunology, 1991
- The Dendritic Cell System And Its Role In ImmunogenicityAnnual Review of Immunology, 1991
- Migration and maturation of Langerhans cells in skin transplants and explants.The Journal of Experimental Medicine, 1990
- Cultured Human Langerhans Cells Resemble Lymphoid Dendritic Cells in Phenotype and FunctionJournal of Investigative Dermatology, 1989
- The cell surface of mouse dendritic cells: FACS analyses of dendritic cells from different tissues including thymusCellular Immunology, 1989
- Migration patterns of dendritic cells in the mouse. Homing to T cell-dependent areas of spleen, and binding within marginal zone.The Journal of Experimental Medicine, 1988
- Lymph-Borne Dendritic Leucocytes do Not Recirculate, but Enter the Lymph Node Paracortex to Become Interdigitating CellsScandinavian Journal of Immunology, 1988