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边界嵴神经嵴干细胞促进移植到小鼠撕脱背根后的血管生成,并诱导 3D 打印支架中内皮细胞的迁移。

Boundary cap neural crest stem cells promote angiogenesis after transplantation to avulsed dorsal roots in mice and induce migration of endothelial cells in 3D printed scaffolds.

机构信息

Department of Medical Sciences, Uppsala University Hospital, Rehabilitation Medicine, 751 85 Uppsala, Sweden.

Department of Immunology, Genetics and Pathology, Uppsala University Biomedical Center, PO Box 815, 751 08 Uppsala, Sweden.

出版信息

Neurosci Lett. 2024 Mar 15;826:137724. doi: 10.1016/j.neulet.2024.137724. Epub 2024 Mar 11.

Abstract

Dorsal root avulsion injuries lead to loss of sensation and to reorganization of blood vessels (BVs) in the injured area. The inability of injured sensory axons to re-enter the spinal cord results in permanent loss of sensation, and often also leads to the development of neuropathic pain. Approaches that restore connection between peripheral sensory axons and their CNS targets are thus urgently need. Previous research has shown that sensory axons from peripherally grafted human sensory neurons are able to enter the spinal cord by growing along BVs which penetrate the CNS from the spinal cord surface. In this study we analysed the distribution of BVs after avulsion injury and how their pattern is affected by implantation at the injury site of boundary cap neural crest stem cells (bNCSCs), a transient cluster of cells, which are located at the boundary between the spinal cord and peripheral nervous system and assist the growth of sensory axons from periphery into the spinal cord during development. The superficial dorsal spinal cord vasculature was examined using intravital microscopy and intravascular BV labelling. bNCSC transplantation increased vascular volume in a non-dose responsive manner, whereas dorsal root avulsion alone did not decrease the vascular volume. To determine whether bNCSC are endowed with angiogenic properties we prepared 3D printed scaffolds, containing bNCSCs together with rings prepared from mouse aorta. We show that bNCSC do induce migration and assembly of endothelial cells in this system. These findings suggest that bNCSC transplant can promote vascularization in vivo and contribute to BV formation in 3D printed scaffolds.

摘要

背根撕脱伤导致感觉丧失和受伤区域血管(BVs)的重新组织。受伤感觉轴突无法重新进入脊髓会导致感觉永久性丧失,并且常常还会导致神经性疼痛的发展。因此,迫切需要能够恢复外周感觉轴突与其中枢神经系统靶标之间连接的方法。先前的研究表明,来自外周移植的人感觉神经元的感觉轴突能够通过沿着从脊髓表面穿透中枢神经系统的 BVs 生长进入脊髓。在这项研究中,我们分析了撕脱伤后 BVs 的分布情况,以及其模式如何受到在损伤部位植入边界帽神经嵴干细胞(bNCSC)的影响。bNCSC 是一种短暂的细胞簇,位于脊髓和周围神经系统之间的边界处,在发育过程中协助外周感觉轴突进入脊髓生长。使用活体显微镜和血管内 BV 标记检查了背侧脊髓浅层血管系统。bNCSC 移植以非剂量反应的方式增加血管体积,而单独的背根撕脱不会减少血管体积。为了确定 bNCSC 是否具有血管生成特性,我们制备了 3D 打印支架,其中包含 bNCSC 以及从小鼠主动脉制备的环。我们表明,bNCSC 确实会在该系统中诱导内皮细胞的迁移和组装。这些发现表明,bNCSC 移植可以促进体内血管生成,并有助于 3D 打印支架中 BV 的形成。

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