TY - JOUR
T1 - The development, maturation, and turnover rate of mouse spleen dendritic cell populations
AU - Kamath, A. T.
AU - Pooley, J.
AU - O'Keeffe, M. A.
AU - Vremec, David
AU - Zhan, Yongzhao
AU - Lew, A. M.
AU - D'Amico, Leonard A
AU - Wu, L.
AU - Tough, D. F.
AU - Shortman, Ken
PY - 2000/12/15
Y1 - 2000/12/15
N2 - Three distinct subtypes of dendritic cells (DC) are present in mouse spleen, separable as CD4 - 8α - , CD4 + 8α - , and CD4 - 8≃ + DC. We have tested whether these represent stages of development or activation within one DC lineage, or whether they represent separate DC lineages. All three DC subtypes appear relatively mature by many criteria, but all retain a capacity to phagocytose particulate material in vivo. Although further maturation or activation could be induced by bacterially derived stimuli, phagocytic capacity was retained, and no DC subtype was converted to the other. Continuous elimination of CD4 + 8 - DC by Ab depletion had no effect on the levels of the other DC subtypes. Bromodeoxyuridine labeling experiments indicated that all three DC subtypes have a rapid turnover (half-life, 1.5-2.9 days) in the spleen, with none being the precursor of another. The three DC subtypes showed different kinetics of development from bone marrow precursors. The CD8α + spleen DC, apparently the most mature, displayed an extremely rapid turnover based on bromodeoxyuridine uptake and the fastest generation from bone marrow precursors. In conclusion, the three splenic DC subtypes behave as rapidly turning over products of three independent developmental streams.
AB - Three distinct subtypes of dendritic cells (DC) are present in mouse spleen, separable as CD4 - 8α - , CD4 + 8α - , and CD4 - 8≃ + DC. We have tested whether these represent stages of development or activation within one DC lineage, or whether they represent separate DC lineages. All three DC subtypes appear relatively mature by many criteria, but all retain a capacity to phagocytose particulate material in vivo. Although further maturation or activation could be induced by bacterially derived stimuli, phagocytic capacity was retained, and no DC subtype was converted to the other. Continuous elimination of CD4 + 8 - DC by Ab depletion had no effect on the levels of the other DC subtypes. Bromodeoxyuridine labeling experiments indicated that all three DC subtypes have a rapid turnover (half-life, 1.5-2.9 days) in the spleen, with none being the precursor of another. The three DC subtypes showed different kinetics of development from bone marrow precursors. The CD8α + spleen DC, apparently the most mature, displayed an extremely rapid turnover based on bromodeoxyuridine uptake and the fastest generation from bone marrow precursors. In conclusion, the three splenic DC subtypes behave as rapidly turning over products of three independent developmental streams.
UR - http://www.scopus.com/inward/record.url?scp=0034672034&partnerID=8YFLogxK
M3 - Article
C2 - 11120796
AN - SCOPUS:0034672034
SN - 0022-1767
VL - 165
SP - 6762
EP - 6770
JO - Journal of Immunology
JF - Journal of Immunology
IS - 12
ER -