Dendritic cells (DCs) are the most potent antigen-presenting cells, yet little data are available on the differential characteristics of donor and recipient DCs (dDCs and rDCs, respectively) during the process of islet allograft rejection. DTR-GFP-DC mice provide a novel tool to monitor DC trafficking and characteristics during allograft rejection. We show rapid migration of dDCs to recipient lymphoid tissues as early as 3 h post-islet allotransplantation. Compared with rDCs, dDCs express different patterns of chemokine receptors, display differential proliferative capacity, and exhibit a higher level of maturity; these findings could be attributed to the effects of injury that dDCs undergo during islet cell preparation and engraftment. Intriguingly, we detected dDCs in the spleen of recipients long after rejection of islet allografts. Given that dDCs express high levels of CCR7, islets were cultured before transplant with the ligand for CCR7 (CCL21). This novel method, which enabled us to enhance the efflux of dDCs from islet preparations, resulted in a prolongation of islet allograft survival in immunocompetent recipients. This study introduces dDCs and rDCs as two distinct types of DCs and provides novel data with clinical implications to use chemokine-based DC-depleting strategies to prolong islet allograft survival.

Characterization of donor dendritic cells and enhancement of dendritic cell efflux with cc-chemokine ligand 21 : a novel strategy to prolong islet allograft survival / P. Fiorina, M. Jurewicz, K. Tanaka, N. Behazin, A. Augello, A. Vergani, U. Von Adrian, N.R. Smith, M.H. Sayegh, R. Abdi. - In: DIABETES. - ISSN 0012-1797. - 56:4(2007), pp. 912-920. [10.2337/db06-1445]

Characterization of donor dendritic cells and enhancement of dendritic cell efflux with cc-chemokine ligand 21 : a novel strategy to prolong islet allograft survival

P. Fiorina
Primo
;
2007

Abstract

Dendritic cells (DCs) are the most potent antigen-presenting cells, yet little data are available on the differential characteristics of donor and recipient DCs (dDCs and rDCs, respectively) during the process of islet allograft rejection. DTR-GFP-DC mice provide a novel tool to monitor DC trafficking and characteristics during allograft rejection. We show rapid migration of dDCs to recipient lymphoid tissues as early as 3 h post-islet allotransplantation. Compared with rDCs, dDCs express different patterns of chemokine receptors, display differential proliferative capacity, and exhibit a higher level of maturity; these findings could be attributed to the effects of injury that dDCs undergo during islet cell preparation and engraftment. Intriguingly, we detected dDCs in the spleen of recipients long after rejection of islet allografts. Given that dDCs express high levels of CCR7, islets were cultured before transplant with the ligand for CCR7 (CCL21). This novel method, which enabled us to enhance the efflux of dDCs from islet preparations, resulted in a prolongation of islet allograft survival in immunocompetent recipients. This study introduces dDCs and rDCs as two distinct types of DCs and provides novel data with clinical implications to use chemokine-based DC-depleting strategies to prolong islet allograft survival.
Animals; Bone Marrow Cells; Cell Division; Chemokine CCL21; Chemokines, CC; Dendritic Cells; Diabetes Mellitus, Experimental; Genes, Reporter; Islets of Langerhans Transplantation; Mice; Mice, Inbred BALB C; Mice, Inbred C57BL; Transplantation, Homologous; Internal Medicine; Endocrinology, Diabetes and Metabolism
Settore MED/13 - Endocrinologia
2007
Article (author)
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2434/499333
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