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轴突导向因子netrin-1基因沉默对胎盘血管生成影响的体内外实验研究
引用本文:谢涵,邹丽,朱剑文,杨昀,钟少平,王乾华. 轴突导向因子netrin-1基因沉默对胎盘血管生成影响的体内外实验研究[J]. 中华妇产科杂志, 2009, 46(8): 364-369. DOI: 10.3760/cma.j.issn.0529-567x.2011.05.011
作者姓名:谢涵  邹丽  朱剑文  杨昀  钟少平  王乾华
作者单位:华中科技大学同济医学院附属协和医院妇产科,武汉,430022;
摘    要:Objective To study influence on angiogenesis of placenta by gene silencing of netrin-1.Methods Netrin-1 gene in human umbilical vein endothelial cells(HUVEC)and placenta of pregnant rats were silenced by RNA interference.The following methods were used in this study,including the phenytetrazoliumromide(MTT)for viability,clone formation for proliferation,transwell for migration,and tube formation for angiogenesis in vitro.The change of fetal growth was recorded.Placental microvessel density in pregnant rats was measured by immunohistochemical CD34 staining in vivo.Results (1)HUVEC:viability and proliferation of HUVEC were remarkably inhibited by gene silencing of netrin-1.which number of clone formation,migration cell,tube formation were from(69±6)%,86±17,37±9 decreased to(46±5)%,46±13 and 17±5(P<0.05)respectively.(2)Placenta of pregnant rats:after netrin-1gene silenced,fetal weight were decreased from(2.39 ±0.17)g to(2.12±0.10)g(P<0.05).Placental microvessel density was decreased from(258±38)/mm2 to(197±32)/mm2 in vivo(P<0.05).Conclusions Gene silencing of netrin-1 could inhibit viability,proliferation,migration,tubal formation of HUVEC and angiogcnesis of placenta.Netrin-1 plays an important role in regulating angiogenesis in placenta.

关 键 词:神经生长因子类   肿瘤抑制蛋白质类   基因沉默   新生血管化,生理性   胎盘   

In vivo and in vitro research study of the influence on placenta angiogenesis by gene silencing of netrin-1
XIE Han,ZOU Li,ZHU Jian-wen,YANG Yun,ZHONG Shao-ping,WANG Qian-hua. In vivo and in vitro research study of the influence on placenta angiogenesis by gene silencing of netrin-1[J]. Chinese Journal of Obstetrics and Gynecology, 2009, 46(8): 364-369. DOI: 10.3760/cma.j.issn.0529-567x.2011.05.011
Authors:XIE Han  ZOU Li  ZHU Jian-wen  YANG Yun  ZHONG Shao-ping  WANG Qian-hua
Abstract:
Keywords:Nerve growth factorsTumor suppressor proteinsGene silencingNeovascularization  physiologicPlacenta
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