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在小鼠后肢缺血模型中使用微型计算机断层扫描绘制三维新生血管组织形成步骤——简要报告

Mapping 3-dimensional neovessel organization steps using micro-computed tomography in a murine model of hindlimb ischemia-brief report.

作者信息

Oses Pierre, Renault Marie-Ange, Chauvel Rémi, Leroux Lionel, Allières Cécile, Séguy Benjamin, Lamazière Jean-Marie Daniel, Dufourcq Pascale, Couffinhal Thierry, Duplàa Cécile

机构信息

Inserm U828, Pessac, Université Victor Ségalen, Bordeaux, France.

出版信息

Arterioscler Thromb Vasc Biol. 2009 Dec;29(12):2090-2. doi: 10.1161/ATVBAHA.109.192732. Epub 2009 Sep 10.

Abstract

OBJECTIVE

Studying the mechanisms of neovascularization and evaluating the effects of proangiogenic strategies require accurate analysis of the neovascular network. We sought to evaluate the contribution of the microcomputed tomography (mCT) providing high-resolution 3-dimensional (3D) structural data, to a better comprehension of the well-studied mouse hindlimb postischemic neovascularization.

METHODS AND RESULTS

We showed a predominant arteriogenesis process in the thigh and a predominant angiogenesis-related process in the tibiofibular region, in response to ischemia during the first 15 days. After 15 days, mCT quantitative analysis reveals a remodeling of arterial neovessels and a regression depending on the restoration of the blood flow. We provided also new mCT data on the rapid and potent angiogenic effects of mesenchymal stem cell therapy on vessel formation and organization. We discussed the contribution of this technique compared with or in addition to data generated by the more conventional approaches.

CONCLUSIONS

This study demonstrated that optimized mCT is a robust method for providing new insights into the 3D understanding of postischemic vessel formation.

摘要

目的

研究新生血管形成机制并评估促血管生成策略的效果需要对新生血管网络进行准确分析。我们试图评估能提供高分辨率三维(3D)结构数据的微型计算机断层扫描(mCT),对更好理解已得到充分研究的小鼠后肢缺血后新生血管形成的作用。

方法与结果

我们发现,在前15天,缺血反应导致大腿主要发生动脉生成过程,胫腓区域主要发生与血管生成相关的过程。15天后,mCT定量分析显示动脉新血管重塑以及取决于血流恢复情况的消退。我们还提供了关于间充质干细胞疗法对血管形成和组织的快速且强效血管生成作用的新mCT数据。我们讨论了该技术与更传统方法所产生的数据相比或作为补充时的作用。

结论

本研究表明,优化后的mCT是一种强有力的方法,能为三维理解缺血后血管形成提供新见解。

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