Daro E, Pulendran B, Brasel K, Teepe M, Pettit D, Lynch D H, Vremec D, Robb L, Shortman K, McKenna H J, Maliszewski C R, Maraskovsky E
Department of Immunobiology, Research Administration, and Analytical Chemistry and Formulation, Immunex Corporation, Seattle, WA 98101, USA.
J Immunol. 2000 Jul 1;165(1):49-58. doi: 10.4049/jimmunol.165.1.49.
Dendritic cells (DC) are potent APCs that can be characterized in the murine spleen as CD11b(high)CD11c(high) or CD11b(low)CD11c(high). Daily injection of mice of Flt3 ligand (FL) into mice transiently expands both subsets of DC in vivo, but the effect of administration of GM-CSF on the expansion of DC in vivo is not well defined. To gain further insight into the role of GM-CSF in DC development and function in vivo, we treated mice with polyethylene glycol-modified GM-CSF (pGM-CSF) which has an increased half-life in vivo. Administration of pGM-CSF to mice for 5 days led to a 5- to 10-fold expansion of CD11b(high)CD11c(high) but not CD11b(low)CD11c(high) DC. DC from pGM-CSF-treated mice captured and processed Ag more efficiently than DC from FL-treated mice. Although both FL- and pGM-CSF-generated CD11b(high)CD11c(high) DC were CD8alpha-, a greater proportion of these DC from pGM-CSF-treated mice were 33D1+ than from FL-treated mice. CD11b(low)CD11c(high) DC from FL-treated mice expressed high levels of intracellular MHC class II. DC from both pGM-CSF- and FL-treated mice expressed high levels of surface class II, low levels of the costimulatory molecules CD40, CD80, and CD86 and were equally efficient at stimulating allogeneic and Ag-specific T cell proliferation in vitro. The data demonstrate that treatment with pGM-CSF in vivo preferentially expands CD11b(high)CD11c(high) DC that share phenotypic and functional characteristics with FL-generated CD11b(high)CD11c(high) DC but can be distinguished from FL-generated DC on the basis of Ag capture and surface expression of 33D1.
树突状细胞(DC)是强大的抗原呈递细胞(APC),在小鼠脾脏中可被表征为CD11b(高)CD11c(高)或CD11b(低)CD11c(高)。每日向小鼠注射Flt3配体(FL)可在体内短暂扩增DC的两个亚群,但给予GM-CSF对体内DC扩增的影响尚不明确。为了进一步深入了解GM-CSF在体内DC发育和功能中的作用,我们用体内半衰期延长的聚乙二醇修饰的GM-CSF(pGM-CSF)处理小鼠。给小鼠施用pGM-CSF 5天导致CD11b(高)CD11c(高)DC扩增5至10倍,但CD11b(低)CD11c(高)DC未扩增。来自pGM-CSF处理小鼠的DC比来自FL处理小鼠的DC更有效地捕获和处理抗原。尽管FL和pGM-CSF产生的CD11b(高)CD11c(高)DC均为CD8α阴性,但与FL处理小鼠相比,来自pGM-CSF处理小鼠的这些DC中33D1 +的比例更高。来自FL处理小鼠的CD11b(低)CD11c(高)DC表达高水平的细胞内MHC II类分子。来自pGM-CSF和FL处理小鼠的DC均表达高水平的表面II类分子、低水平的共刺激分子CD40、CD80和CD86,并且在体外刺激同种异体和抗原特异性T细胞增殖方面同样有效。数据表明,体内用pGM-CSF处理可优先扩增CD11b(高)CD11c(高)DC,其与FL产生的CD11b(高)CD11c(高)DC具有相同的表型和功能特征,但可根据抗原捕获和33D1的表面表达与FL产生的DC区分开来。