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基质金属蛋白酶-2缺乏导致受伤小鼠脊髓长期血管不稳定和退化。

Deficiency in matrix metalloproteinase-2 results in long-term vascular instability and regression in the injured mouse spinal cord.

作者信息

Trivedi Alpa, Zhang Haoqian, Ekeledo Adanma, Lee Sangmi, Werb Zena, Plant Giles W, Noble-Haeusslein Linda J

机构信息

Department of Neurological Surgery, University of California, San Francisco, CA 94143, USA.

Department of Neurological Surgery, University of California, San Francisco, CA 94143, USA.

出版信息

Exp Neurol. 2016 Oct;284(Pt A):50-62. doi: 10.1016/j.expneurol.2016.07.018. Epub 2016 Jul 25.

DOI:10.1016/j.expneurol.2016.07.018
PMID:27468657
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC5035216/
Abstract

Angiogenesis plays a critical role in wound healing after spinal cord injury. Therefore, understanding the events that regulate angiogenesis has considerable relevance from a therapeutic standpoint. We evaluated the contribution of matrix metalloproteinase (MMP)-2 to angiogenesis and vascular stability in spinal cord injured MMP-2 knockout and wildtype (WT) littermates. While MMP-2 deficiency resulted in reduced endothelial cell division within the lesioned epicenter, there were no genotypic differences in vascularity (vascular density, vascular area, and endothelial cell number) over the first two weeks post-injury. However, by 21days post-injury MMP-2 deficiency resulted in a sharp decline in vascularity, indicative of vascular regression. Complementary in vitro studies of brain capillary endothelial cells confirmed MMP-2 dependent proliferation and tube formation. As deficiency in MMP-2 led to prolonged MMP-9 expression in the injured spinal cord, we examined both short-term and long-term exposure to MMP-9 in vitro. While MMP-9 supported endothelial tube formation and proliferation, prolonged exposure resulted in loss of tubes, findings consistent with vascular regression. Vascular instability is frequently associated with pericyte dissociation and precedes vascular regression. Quantification of PDGFrβ+ pericyte coverage of mature vessels within the glial scar (the reactive gliosis zone), a known source of MMP-9, revealed reduced coverage in MMP-2 deficient animals. These findings suggest that acting in the absence of MMP-2, MMP-9 transiently supports angiogenesis during the early phase of wound healing while its prolonged expression leads to vascular instability and regression. These findings should be considered while developing therapeutic interventions that block MMPs.

摘要

血管生成在脊髓损伤后的伤口愈合中起着关键作用。因此,从治疗角度来看,了解调节血管生成的事件具有重要意义。我们评估了基质金属蛋白酶(MMP)-2对脊髓损伤的MMP-2基因敲除小鼠和野生型(WT)同窝小鼠血管生成和血管稳定性的作用。虽然MMP-2缺乏导致损伤中心内皮细胞分裂减少,但在损伤后的前两周,血管生成(血管密度、血管面积和内皮细胞数量)没有基因型差异。然而,在损伤后21天,MMP-2缺乏导致血管生成急剧下降,表明血管消退。对脑毛细血管内皮细胞的补充体外研究证实了MMP-2依赖性增殖和管形成。由于MMP-2缺乏导致损伤脊髓中MMP-9表达延长,我们在体外研究了短期和长期暴露于MMP-9的情况。虽然MMP-9支持内皮管形成和增殖,但长时间暴露导致管丢失,这一结果与血管消退一致。血管不稳定常与周细胞解离有关,并先于血管消退。对胶质瘢痕(反应性胶质增生区)内成熟血管的PDGFrβ+周细胞覆盖进行定量分析,胶质瘢痕是MMP-9的已知来源,结果显示MMP-2缺乏动物的覆盖减少。这些发现表明,在没有MMP-2的情况下,MMP-9在伤口愈合早期短暂支持血管生成,而其延长表达导致血管不稳定和消退。在开发阻断MMPs的治疗干预措施时,应考虑这些发现。

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