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Tytuł pozycji:

The response of spleen dendritic cell-enriched population to bacterial and allogeneic antigens.

Tytuł:
The response of spleen dendritic cell-enriched population to bacterial and allogeneic antigens.
Autorzy:
Stanisławska J; Dept. of Surgical Research & Transplantology, Medical Research Centre, Polish Academy of Sciences, Warsaw, Poland.
Interewicz B
Maksymowicz M
Moscicka M
Olszewski WL
Źródło:
Annals of transplantation [Ann Transplant] 2005; Vol. 10 (4), pp. 17-23.
Typ publikacji:
Journal Article
Język:
English
Imprint Name(s):
Publication: <2013- > : Smithtown, New York: International Scientific Literature, Inc.
Original Publication: Warsaw : Polish Transplantology Foundation : Transplantation Institute, Warsaw Medical School, 1996-
MeSH Terms:
Antigens, Bacterial/*physiology
Dendritic Cells/*immunology
Escherichia coli/*immunology
Isoantigens/*physiology
Spleen/*immunology
Staphylococcus epidermidis/*immunology
Animals ; Antigens, CD/metabolism ; Chaperonin 60/metabolism ; Cytokines/metabolism ; Dendritic Cells/cytology ; Dendritic Cells/metabolism ; HSP90 Heat-Shock Proteins/metabolism ; Immunoglobulins/metabolism ; Membrane Glycoproteins/metabolism ; Organ Transplantation/physiology ; Phenotype ; Rats ; Rats, Inbred BN ; Rats, Inbred Lew ; Receptors, Interleukin-3/metabolism ; Spleen/cytology ; Toll-Like Receptors/metabolism ; CD83 Antigen
Substance Nomenclature:
0 (Antigens, Bacterial)
0 (Antigens, CD)
0 (Chaperonin 60)
0 (Cytokines)
0 (HSP90 Heat-Shock Proteins)
0 (Immunoglobulins)
0 (Isoantigens)
0 (Membrane Glycoproteins)
0 (Receptors, Interleukin-3)
0 (Toll-Like Receptors)
Entry Date(s):
Date Created: 20061014 Date Completed: 20061128 Latest Revision: 20231213
Update Code:
20240104
PMID:
17037083
Czasopismo naukowe
The dendritic cells (DC) play crucial role in initiation and modulation of immune response especially innate immune response. We investigated the influence bacterial (E. coli and S. epidermidis) and allogeneic antigens (heart, skin and bone marrow transplants) on splenic DC- enriched population. We found that 1) the in culture stimulation of rat splenic DC-enriched population by E. coli, S.epidermidis, LPS and CpG DNA caused increase in class II-positive cells. Simultaneously, a decrease in percentage of EDI, B cells and OX62 migrating DC upon treatment with S.epidermidis was observed. LPS caused decreased frequency of OX62 and NK cells. 2) Similarly to the in vitro the in vivo stimulation by E. coli, S.epidermidis, LPS and CpG DNA increased the percentage of class II-positive cells. There was a decrease in the ED1, OX62 and B cell populations following stimulation by S. epidermidis. 3) Mixed DC-enriched population and donor PBM culture showed high level of response in both populations. 4) Syngeneic and allogeneic transplants of heart, skin and BMC caused increase in class II-positive cells. Moreover, there was an increase in frequency of the ED1 and W3/13 populations after both syn- and allogeneic transplantation. The OX62 cells did not react, whereas the B cell frequency rose only after allogeneic transplantation. A significant decrease in NK cell population was noticed. 5) The in vitro and in vivo bacterial stimulation brought about expression of TLR receptors and Hsp. Mixed recipient DC with donor PBM culture caused expression of Hsp 90 but not TLRs. Allogeneic stimulation by transplanted tissues did not evoke expression of the investigated receptors and proteins. 6) Recipient DC-enriched population produced IFN gamma upon stimulation with bacteria and skin but not heart and BMC. Further studies on simultaneous stimulation of splenic DCs by bacterial and allo-antigens will throw light on additive effects of bacterial activation in allograft rejection.

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