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Lack of collagen XV is protective after ischemic stroke in mice

机译:小鼠缺血性中风后缺乏胶原蛋白XV具有保护作用

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摘要

Collagens are key structural components of basement membranes, providing a scaffold for other components or adhering cells. Collagens and collagen-derived active fragments contribute to biological activities such as cell growth, differentiation and migration. Here, we report that collagen XV knock-out (ColXV KO) mice are resistant to experimental ischemic stroke. Interestingly, the infarcts of ColXV KO mice were as small as those of wild-type (WT) mice thrombolysed with recombinant tissue plasminogen activator (rtPA), the actual treatment for ischemic stroke. Importantly, there were no differences in the architecture of cerebrovascular anatomy between WT and ColXV KO mice. We found a twofold increase of the most potent pro-angiogenic factor, type A vascular growth endothelial factor (VEGF-A) in the ipsilateral cortex of rtPA-treated ischemic WT mice compared with untreated ischemic and sham-operated counterparts. A similar increase of VEGF-A was also found in both rtPA and untreated ischemic ColXV KO mice compared with sham ColXV KO mice. Finally, we evidenced that the levels of ColXV were increased in the plasma of WT mice treated with rtPA compared with untreated ischemic counterparts. Altogether, this study indicates that the lack ColXV is protective after stroke and that the degradation of endothelial ColXV may contribute to the beneficial effect of rtPA after ischemic stroke. The neuroprotection observed in ColXV KO mice may be attributed to the increased VEGF-A production following stroke in the ischemic territory.
机译:胶原蛋白是基底膜的关键结构成分,为其他成分或粘附细胞提供了支架。胶原蛋白和胶原蛋白衍生的活性片段有助于生物活性,例如细胞生长,分化和迁移。在这里,我们报告说胶原蛋白XV敲除(ColXV KO)小鼠对实验性缺血性中风有抵抗力。有趣的是,ColXV KO小鼠的梗塞面积与用重组组织纤溶酶原激活剂(rtPA)溶栓的野生型(WT)小鼠一样小,这是缺血性卒中的实际治疗方法。重要的是,WT和ColXV KO小鼠的脑血管解剖结构没有差异。我们发现,与未经治疗的缺血性和假手术的对等小鼠相比,rtPA治疗的缺血性WT小鼠同侧皮质中最有效的促血管生成因子A型血管生长内皮因子(VEGF-A)增加了两倍。与假ColXV KO小鼠相比,在rtPA和未治疗的缺血ColXV KO小鼠中也发现了类似的VEGF-A增加。最后,我们证明了与未经治疗的缺血性对应物相比,接受rtPA治疗的WT小鼠血浆中ColXV水平升高。总之,这项研究表明,缺乏ColXV对中风后具有保护作用,并且内皮ColXV的降解可能有助于缺血性中风后rtPA的有益作用。在ColXV KO小鼠中观察到的神经保护作用可能归因于缺血区域中风后VEGF-A产生的增加。

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