Mandel Erin R, Uchida Cassandra, Nwadozi Emmanuel, Makki Armin, Haas Tara L
School of Kinesiology and Health Science and the Muscle Health Research Centre, York University, Toronto, Ontario, Canada.
J Cell Physiol. 2017 Apr;232(4):831-841. doi: 10.1002/jcp.25491. Epub 2016 Jul 28.
Remodeling of the skeletal muscle microvasculature involves the coordinated actions of matrix metalloproteinases (MMPs) and their endogenous inhibitors, tissue inhibitor of metalloproteinases (TIMPs). We hypothesized that the loss of TIMP1 would enhance both ischemia and flow-induced vascular remodeling by increasing MMP activity. TIMP1 deficient (Timp1 ) and wild-type (WT) C57BL/6 mice underwent unilateral femoral artery (FA) ligation or were treated with prazosin, an alpha-1 adrenergic receptor antagonist, in order to investigate vascular remodeling to altered flow. Under basal conditions, Timp1 mice had reduced microvascular content as compared to WT mice. Furthermore, vascular remodeling was impaired in Timp1 mice. Timp1 mice displayed reduced blood flow recovery in response to FA ligation and no arteriogenic response to prazosin treatment. Timp1 mice failed to undergo angiogenesis in response to ischemia or prazosin, despite maintaining the capacity to increase VEGF-A and eNOS mRNA. Vascular permeability was increased in muscles of Timp1 mice in response to both prazosin treatment and FA ligation, but this was not accompanied by greater MMP activity. This study highlights a previously undescribed integral role for TIMP1 in both vascular network maturation and adaptations to ischemia or alterations in flow. J. Cell. Physiol. 232: 831-841, 2017. © 2016 Wiley Periodicals, Inc.
骨骼肌微血管系统的重塑涉及基质金属蛋白酶(MMPs)及其内源性抑制剂金属蛋白酶组织抑制剂(TIMPs)的协同作用。我们假设TIMP1的缺失会通过增加MMP活性来增强缺血和血流诱导的血管重塑。为了研究血管对血流改变的重塑情况,对TIMP1缺陷(Timp1-/-)和野生型(WT)C57BL/6小鼠进行单侧股动脉(FA)结扎或用α-1肾上腺素能受体拮抗剂哌唑嗪进行治疗。在基础条件下,与WT小鼠相比,Timp1-/-小鼠的微血管含量减少。此外,Timp1-/-小鼠的血管重塑受损。Timp1-/-小鼠对FA结扎的血流恢复减少,对哌唑嗪治疗无动脉生成反应。尽管Timp1-/-小鼠维持增加VEGF-A和eNOS mRNA的能力,但对缺血或哌唑嗪无血管生成反应。Timp1-/-小鼠的肌肉对哌唑嗪治疗和FA结扎的血管通透性均增加,但这并未伴随着更高的MMP活性。本研究突出了TIMP1在血管网络成熟以及对缺血或血流改变的适应中以前未被描述的不可或缺的作用。《细胞生理学杂志》232: 831 - 841, 2017。© 2016威利期刊公司