Suratt Benjamin T, Petty Joseph M, Young Scott K, Malcolm Kenneth C, Lieber Jonathan G, Nick Jerry A, Gonzalo Jose-Angel, Henson Peter M, Worthen G Scott
University of Vermont College of Medicine, 149 Beaumont Ave, Burlington, VT 05405, USA.
Blood. 2004 Jul 15;104(2):565-71. doi: 10.1182/blood-2003-10-3638. Epub 2004 Mar 30.
The bone marrow is the primary site for neutrophil production and release into the circulation. Because the CXC chemokine receptor-4/stromal derived factor-1 (CXCR4/SDF-1) axis plays a central role in the interactions of hematopoietic stem cells, lymphocytes, and developing neutrophils in the marrow, we investigated whether reciprocal CXCR4-dependent mechanisms might be involved in neutrophil release and subsequent return to the marrow following circulation. Neutralizing antibody to CXCR4 reduced marrow retention of infused neutrophils (45.7% +/- 0.5% to 6.9% +/- 0.5%) and was found to mobilize neutrophils from marrow (34.4% +/- 4.4%). Neutrophil CXCR4 expression and SDF-1-induced calcium flux decreased with maturation and activation of the cells, corresponding to the decreased marrow homing associated with these characteristics in vivo. Infusion of the inflammatory mediator and CXCR2 ligand KC led to mobilization of neutrophils from marrow by itself and was augmented 3-fold by low doses of CXCR4-blocking antibody that otherwise had no mobilizing effect. Examination of KC and SDF-1 calcium signaling demonstrated that the effect of KC may, in part, be due to heterologous desensitization to SDF-1. These results suggest that the CXCR4/SDF-1 axis is critical in circulating neutrophil homeostasis and that it may participate in the rapid release of neutrophils from the marrow during inflammation through a novel interaction with inflammatory CXC chemokines.
骨髓是中性粒细胞产生并释放进入循环系统的主要场所。由于CXC趋化因子受体4/基质细胞衍生因子1(CXCR4/SDF-1)轴在造血干细胞、淋巴细胞及骨髓中发育中的中性粒细胞的相互作用中起核心作用,我们研究了CXCR4依赖性的相互作用机制是否参与中性粒细胞的释放以及循环后返回骨髓的过程。抗CXCR4中和抗体降低了输注的中性粒细胞在骨髓中的滞留率(从45.7%±0.5%降至6.9%±0.5%),并发现其能动员骨髓中的中性粒细胞(34.4%±4.4%)。随着细胞的成熟和激活,中性粒细胞CXCR4的表达及SDF-1诱导的钙流减少,这与体内这些特征相关的骨髓归巢减少相一致。输注炎症介质及CXCR2配体KC可单独导致骨髓中性粒细胞的动员,低剂量的CXCR4阻断抗体可使其动员作用增强3倍,而该抗体本身并无动员作用。对KC和SDF-1钙信号的检测表明,KC的作用可能部分归因于对SDF-1的异源脱敏。这些结果提示,CXCR4/SDF-1轴在循环中性粒细胞稳态中起关键作用,并且它可能通过与炎症性CXC趋化因子的新型相互作用参与炎症期间中性粒细胞从骨髓的快速释放。