Human Umbilical Cord Blood CD34+Cells InducedAngiogenesis in Ischemic Limb of Mice.
Zuoguan Chen, Yongpeng Diao, Zhiyuan Wu, Sheng Yan, Yongjun Li
Abstract
Zuoguan Chen, Yongpeng Diao, Zhiyuan Wu, Sheng Yan, Yongjun Li
Abstract
Objective To observe the effect of the expanded human umbilical cord blood CD34+cells in ischemic limb of mice and analyse the relationship between the CD34+cells and angiogenesis. Methods Human umbilical cord blood was collected and CD34+cells were separated for expanding. Mice limbs ischemia models were established (n=15) and randomly divided into three groups:expanded CD34+cells group (n=5),fresh CD34+cells group (n=5),and control group(n=5). CD34+cells were detected by DiI dye tracing and antihuman nuclear antigen antibody(HNA) immunohistochemical staining. The improvement of blood reperfusion was evaluated by indicators including limb temperature,CD31 staining,and transforming growth factor-β1 (TGF-β1) mRNA expression. Results On days 14 (t=5.421,P=0.001;t=0.616,P=0.000) and 28(t=10.780,P=0.000; t=12.123,P=0.000),both expanded CD34+cells group and fresh CD34+cells group enjoyed better temperature improvement. Days 28 later,the vascular densities in the expanded CD34+cells group and the fresh CD34+cells group were 592.3±24.6 (t=26.386,P=0.000) and 530.7±25.5 (t=21.502,P=0.000),which were significantly higher than that in control group 219.7±19.9. The TGF-β1 mRNA expression in the expanded CD34+cells group and the fresh CD34+cells group were (0.578±0.050) copies (t=12.376,P=0.000) and (0.504±0.080) copies (t=7.098,P=0.000),both over control group [(0.224±0.040)copies]. Conclusions In vitro culture of cord blood CD34+cells can emigrate to ischemic zone and induce angiogenesis to alleviate ischemia. Thus,it may provide a treatment option for lower limb ischemia.
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Objective To observe the effect of the expanded human umbilical cord blood CD34+cells in ischemic limb of mice and analyse the relationship between the CD34+cells and angiogenesis. Methods Human umbilical cord blood was collected and CD34+cells were separated for expanding. Mice limbs ischemia models were established (n=15) and randomly divided into three groups:expanded CD34+cells group (n=5),fresh CD34+cells group (n=5),and control group(n=5). CD34+cells were detected by DiI dye tracing and antihuman nuclear antigen antibody(HNA) immunohistochemical staining. The improvement of blood reperfusion was evaluated by indicators including limb temperature,CD31 staining,and transforming growth factor-β1 (TGF-β1) mRNA expression. Results On days 14 (t=5.421,P=0.001;t=0.616,P=0.000) and 28(t=10.780,P=0.000; t=12.123,P=0.000),both expanded CD34+cells group and fresh CD34+cells group enjoyed better temperature improvement. Days 28 later,the vascular densities in the expanded CD34+cells group and the fresh CD34+cells group were 592.3±24.6 (t=26.386,P=0.000) and 530.7±25.5 (t=21.502,P=0.000),which were significantly higher than that in control group 219.7±19.9. The TGF-β1 mRNA expression in the expanded CD34+cells group and the fresh CD34+cells group were (0.578±0.050) copies (t=12.376,P=0.000) and (0.504±0.080) copies (t=7.098,P=0.000),both over control group [(0.224±0.040)copies]. Conclusions In vitro culture of cord blood CD34+cells can emigrate to ischemic zone and induce angiogenesis to alleviate ischemia. Thus,it may provide a treatment option for lower limb ischemia.
Key concepts: CD34, Umbilical cord, Cord blood, Andrology, Angiogenesis, Medicine, Immunology, Stem cell