Department of Neuroanatomy and Mol. Brain Research, Ruhr-University, Bochum, Germany.
J Neurosci Res. 2010 May 1;88(6):1223-33. doi: 10.1002/jnr.22292.
Previous studies have shown that transplanted human umbilical cord blood (hUCB)-derived mononuclear cells exert therapeutic effects in various animal models of CNS impairments, including those of perinatal hypoxic-ischemic brain injury. However, the mechanisms of how transplanted cells exert their beneficial effects on the damaged tissue are still unclear. As detection of hUCB cells at the lesion site coincides with the therapeutic effects observed in our model, we investigated the role of the chemokine stromal derived factor (SDF)-1 (CXCL12) as a possible candidate for chemotaxis-mediated 'homing' of transplanted hUCB cells to a hypoxic-ischemic lesion in the perinatal rat brain. Following the hypoxic-ischemic insult expression of SDF-1 significantly increased in lesioned brain hemispheres and was mainly associated with astrocytes. Transplanted hUCB cells expressing the SDF-1 receptor CXCR4 migrated to the lesion site within one day. Inhibition of SDF-1 by application of neutralizing antibodies in vivo resulted in a significantly reduced number of hUCB cells at the lesioned area. The increase in glial SDF-1 expression shortly after induction of the lesion and hUCB cells expressing the corresponding receptor makes SDF-1 a potential chemotactic factor for hUCB cell migration. The reduction of hUCB cells present at the lesion site upon functional inhibition of SDF-1 strengthens the view that the SDF-1/CXCR4 axis is of major importance for cell 'homing'.
先前的研究表明,移植的人脐带血(hUCB)来源的单核细胞在各种中枢神经系统损伤的动物模型中发挥治疗作用,包括围产期缺氧缺血性脑损伤。然而,移植细胞如何对受损组织发挥有益作用的机制尚不清楚。由于在病变部位检测到 hUCB 细胞与我们模型中观察到的治疗效果相吻合,我们研究了趋化因子基质衍生因子(SDF)-1(CXCL12)作为可能的候选物,用于趋化性介导移植的 hUCB 细胞向围产期大鼠脑缺氧缺血损伤的“归巢”。缺氧缺血损伤后,SDF-1 的表达在损伤的大脑半球中显著增加,主要与星形胶质细胞有关。表达 SDF-1 受体 CXCR4 的移植 hUCB 细胞在一天内迁移到损伤部位。体内应用中和抗体抑制 SDF-1 导致损伤区域的 hUCB 细胞数量明显减少。损伤诱导后,星形胶质细胞 SDF-1 表达增加,而 hUCB 细胞表达相应的受体,这使得 SDF-1 成为 hUCB 细胞迁移的潜在趋化因子。SDF-1 功能抑制后损伤部位 hUCB 细胞数量减少,这进一步证实了 SDF-1/CXCR4 轴对细胞“归巢”的重要性。