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室下区源性神经祖细胞沿着血管支架迁移到卒中后的纹状体。

Subventricular zone-derived neural progenitor cells migrate along a blood vessel scaffold toward the post-stroke striatum.

机构信息

Department of Developmental and Regenerative Biology, Nagoya City University Graduate School of Medical Sciences, Nagoya, Japan.

出版信息

Stem Cells. 2010 Mar 31;28(3):545-54. doi: 10.1002/stem.306.

Abstract

The subventricular zone (SVZ) of the adult brain contains neural stem cells that have the capacity to regenerate new neurons after various insults. Brain ischemia causes damage to brain tissue and induces neural regeneration together with angiogenesis. We previously reported that, after ischemic injury in mice, SVZ-derived neural progenitor cells (NPCs) migrate into the striatum, and these NPCs are frequently associated with blood vessels in the regenerating brain tissue. Here we studied the role of blood vessels during the neural regeneration in more detail. BrdU administration experiments revealed that newly generated NPCs were associated with both newly formed and pre-existing blood vessels in the ischemic striatum, suggesting that the angiogenic environment is not essential for the neuron-blood vessel interaction. To observe migrating NPCs and blood vessels simultaneously in damaged brain tissue, we performed live imaging of cultured brain slices after ischemic injury. In this system, we virally labeled SVZ-derived NPCs in Flk1-EGFP knock-in mice in which the blood vessels are labeled with EGFP. Our results provide direct evidence that SVZ-derived NPCs migrate along blood vessels from the SVZ toward the ischemic region of the striatum. The leading process of the migrating NPCs was closely associated with blood vessels, suggesting that this interaction provides directional guidance to the NPCs. These findings suggest that blood vessels play an important role as a scaffold for NPCs migration toward the damaged brain region.

摘要

脑室内下区(SVZ)包含神经干细胞,这些细胞在各种损伤后具有再生新神经元的能力。脑缺血会导致脑组织损伤,并与血管生成一起诱导神经再生。我们之前曾报道过,在小鼠缺血性损伤后,SVZ 来源的神经前体细胞(NPC)迁移到纹状体,这些 NPC 经常与再生脑组织中的血管相关。在这里,我们更详细地研究了血管在神经再生过程中的作用。BrdU 给药实验表明,新生成的 NPC 与缺血纹状体中新形成的和预先存在的血管都有关联,这表明血管生成环境对于神经元-血管相互作用并非必需。为了在受损脑组织中同时观察迁移的 NPC 和血管,我们对缺血性损伤后的培养脑切片进行了活体成像。在这个系统中,我们在 Flk1-EGFP 敲入小鼠中通过病毒标记 SVZ 来源的 NPC,其中血管用 EGFP 标记。我们的结果提供了直接证据,证明 SVZ 来源的 NPC 沿着血管从 SVZ 迁移到纹状体的缺血区域。迁移 NPC 的前导过程与血管密切相关,这表明这种相互作用为 NPC 提供了定向指导。这些发现表明,血管作为 NPC 向受损脑区迁移的支架发挥着重要作用。

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