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首页> 外文期刊>Thrombosis and Haemostasis: Journal of the International Society on Thrombosis and Haemostasis >Therapeutic neovascularization by transplantation of mobilized peripheral blood mononuclear cells for limb ischemia. A comparison between CD34+ and CD34- mononuclear cells.
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Therapeutic neovascularization by transplantation of mobilized peripheral blood mononuclear cells for limb ischemia. A comparison between CD34+ and CD34- mononuclear cells.

机译:通过移植动员的外周血单个核细胞治疗肢体缺血,从而进行治疗性新血管形成。 CD34 +和CD34-单核细胞之间的比较。

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摘要

Autolougous transplantation of granulocyte colony-stimulating factor (G-CSF)-mobilized human peripheral blood mononuclear cells (PBMNCs) improves limb ischemia in patients with arteriosclerosis obliterans of lower extremities and with diabetic foot. However, the mechanism of action of PBMNCs remains elusive. Here, we studied comparatively the effects of the G-CSF-mobilized PBMNCs and CD34-depleted G-CSF-mobilized PBMNCs in an ischemia model of athymic nude mice. Fluorescence- labeled human PBMNCs [1 x 10(6)] were intramuscularly injected into the unilateral ischemic hindlimbs of mice. Laser Doppler imaging analysis revealed a significantly augmented blood perfusion at day 7, 14 and 28 after operation. The capillary density was also markedly increased and the rate of limb loss was significantly reduced in cell-transplanted groups when compared with those in PBS group. In comparison with G-CSF-mobilized PBMNCs, the therapeutic efficiency of G-CSF-mobilized PBMNCs deprived of CD34+ cells was impaired. Transplanted cells were found to accumulate around arterioles and scatter in capillary networks. Incorporation of transplanted cells into new capillaries was observed in the G-CSF-mobilized PBMNCs group, but was not detected in the group deprived of CD34+ cells. There was an elevated expression of VEGF in ischemic tissue. Colocalization of VEGF and transplanted mononuclear cells within adductor tissue was demonstrated. These findings indicate that G-CSF-mobilized PBMNCs promote vascular growth not only by incorporating into vessel walls but also by supplying angiogenic factors. The depletion of CD34+ cells attenuated the therapeutic efficiency of G-CSF-mobilized PBMNCs in response to ischemia-induced neovascularization.
机译:动员粒细胞集落刺激因子(G-CSF)动员的人外周血单核细胞(PBMNCs)可改善下肢动脉硬化闭塞症和糖尿病足患者的肢体缺血。但是,PBBMC的作用机制仍然难以捉摸。在这里,我们比较研究了G-CSF动员的PBMNCs和CD34耗竭的G-CSF动员的PBMNCs在无胸腺裸鼠缺血模型中的作用。将荧光标记的人PBMNCs [1 x 10(6)]肌肉注射到小鼠的单侧缺血后肢中。激光多普勒成像分析显示,术后第7、14和28天血液灌注明显增加。与PBS组相比,细胞移植组的毛细血管密度也显着增加,肢体丢失率显着降低。与G-CSF动员的PBMNCs相比,G-CSF动员的缺乏CD34 +细胞的PBMNCs的治疗效率受到损害。发现移植细胞聚集在小动脉周围并散布在毛细管网络中。在G-CSF动员的PBMNCs组中观察到将移植细胞掺入新的毛细血管中,但在缺少CD34 +细胞的组中未检测到。在缺血组织中VEGF的表达升高。血管内膜生长因子组织和移植的单核细胞在共生组织内共定位。这些发现表明,G-CSF动员的PBMNCs不仅通过掺入血管壁,而且通过提供血管生成因子来促进血管生长。 CD34 +细胞的耗竭减弱了G-CSF动员的PBMNC对缺血诱导的新血管形成的治疗效率。

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