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首页> 外文期刊>American Journal of Physiology >VEGF regulates remodeling during permanent anatomic closure of the ductus arteriosus.
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VEGF regulates remodeling during permanent anatomic closure of the ductus arteriosus.

机译:VEGF在动脉导管永久性解剖闭合期间调节重塑。

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摘要

Anatomic remodeling and permanent closure of the newborn ductus arteriosus appears to require the development of intense hypoxia within the constricted vessel wall. Hypoxic ductus smooth muscle cells express vascular endothelial cell growth factor (VEGF). We studied premature baboons and sheep to determine the effects of VEGF inhibition (in baboons) and VEGF stimulation (in sheep) on ductus remodeling in vivo. For study of VEGF inhibition, 13 premature newborn baboons (68% gestation) were treated with inhibitors of both prostaglandin and nitric oxide production to constrict the ductus and induce ductus wall hypoxia. Six received a neutralizing monoclonal antibody against VEGF (A.4.6.1, mAbVEGF), while seven did not. Both groups developed the same degree of ductus constriction, tissue hypoxia, and VEGF expression. The mAbVEGF treatment produced a significant (P < 0.05) reduction in ductus vasa vasorum ingrowth and neointima formation (due to both a decrease in luminal endothelial cell proliferation and a decrease in smooth muscle cell migration into the neointima). For study of VEGF stimulation, nine sheep fetuses (70% gestation) had their ductus wall injected with either VEGF (n 6) or vehicle (n significant (P < 0.05) increase in vasa vasorum ingrowth and neointima formation. We conclude that VEGF plays an important role in the formation of neointimal mounds and vasa vasorum ingrowth during permanent ductus closure.
机译:新生动脉导管的解剖重塑和永久闭合似乎需要在狭窄的血管壁内发生严重的缺氧。低氧导管平滑肌细胞表达血管内皮细胞生长因子(VEGF)。我们研究了狒狒和绵羊,以确定VEGF抑制(狒狒)和VEGF刺激(绵羊)对体内导管重构的影响。为了研究VEGF抑制作用,用前列腺素和一氧化氮生成抑制剂处理了13只早产狒狒(妊娠率68%),以收缩导管并诱发导管壁缺氧。六名接受抗VEGF的中和性单克隆抗体(A.4.6.1,mAbVEGF),而七名未接受。两组均出现相同程度的导管收缩,组织缺氧和VEGF表达。 mAbVEGF治疗可显着减少血管导管向内生长和新内膜的形成(P <0.05)(由于管腔内皮细胞增殖的减少和平滑肌细胞向新内膜的迁移的减少)。为了研究VEGF刺激作用,对9只绵羊胎儿(妊娠70%)的导管壁注射了VEGF(n 6)或媒介物(n显着(P <0.05)),血管血管向内生长和新内膜形成。在永久性导管闭合过程中,在新内膜丘和脉管血管向内生长的形成中起重要作用。

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