首页> 外文期刊>Blood: The Journal of the American Society of Hematology >CX3CR1 reduces Ly6Chigh-monocyte motility within and release from the bone marrow after chemotherapy in mice.
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CX3CR1 reduces Ly6Chigh-monocyte motility within and release from the bone marrow after chemotherapy in mice.

机译:化疗后,CX3CR1降低了Ly6Chigh单核细胞在骨髓内的运动并从骨髓中释放出来。

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摘要

The chemokine receptor CCR2 controls the release of Ly6C(high) monocytes from the bone marrow and their recruitment to sites of inflammation. A second chemokine receptor, CX3CR1, is differentially expressed on monocyte subsets. We examined the role of CX3CR1 in monocyte trafficking during the recovery phase after cyclophosphamide (CP)-induced myeloablation and observed that, in the absence of CCR2, Ly6C(high) monocytes accumulated in the bone marrow and peripheral reconstitution was severely impaired compared with wild-type (WT) mice. In contrast, in the absence of CX3CR1, Ly6C(high) monocytes accumulated less rapidly in the marrow but recovered faster in the blood and were more recruited into the spleen, suggesting an opposite action between CCR2 and CX3CR1 in myelorestoration. During the recovery phase, marrow medullar monocytes displayed lower CX3CR1 expression and reduced their adherence to coated CX3CL1. Intravital imaging of the bone marrow showed that CP treatment impacts monocyte trafficking between the parenchyma and the vasculature. Medullar monocytes in CX3CR1(-/-) mice and mice treated with a specific antagonist of CX3CR1 displayed increased mean velocity and displacement and a reduced arrest coefficient compared with WT mice. This study indicates that CX3CR1 reduces the motility of Ly6C(high) monocytes in the bone marrow and thereby controls their release.
机译:趋化因子受体CCR2控制从骨髓中释放Ly6C(高)单核细胞,并将其募集到炎症部位。第二个趋化因子受体CX3CR1在单核细胞亚群上差异表达。我们在环磷酰胺(CP)诱导的骨髓消融后的恢复阶段检查了CX3CR1在单核细胞运输中的作用,并观察到,在没有CCR2的情况下,与野生动物相比,在骨髓中积累的Ly6C(高)单核细胞和外周重构严重受损型(WT)小鼠。相反,在没有CX3CR1的情况下,Ly6C(高)单核细胞在骨髓中积累的速度较慢,但​​在血液中恢复得更快,并且更多地被吸收到脾脏中,这表明CCR2和CX3CR1在骨髓修复中的作用相反。在恢复阶段,骨髓髓样单核细胞显示出较低的CX3CR1表达,并降低了它们对包被的CX3CL1的粘附。骨髓的活体内影像显示,CP治疗影响实质和脉管系统之间的单核细胞运输。与WT小鼠相比,CX3CR1(-/-)小鼠和接受CX3CR1特异性拮抗剂治疗的小鼠中的髓样单核细胞显示出增加的平均速度和位移以及降低的停滞系数。这项研究表明,CX3CR1降低了Ly6C(high)单核细胞在骨髓中的运动能力,从而控制了它们的释放。

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