Gagne Paul J, Tihonov Nikita, Li Xialou, Glaser Joseph, Qiao Jhenrong, Silberstein Michael, Yee Herman, Gagne Elizabeth, Brooks Peter
New York University School of Medicine, Department of Surgery, 530 First Avenue, Suite 6F, New York, NY 10016, USA.
Am J Pathol. 2005 Nov;167(5):1349-59. doi: 10.1016/S0002-9440(10)61222-9.
Chronic limb-threatening ischemia is a devastating disease with limited surgical options. However, inducing controlled angiogenesis and enhancing reperfusion holds therapeutic promise. To gain a better understanding of the mechanisms that contribute to limb reperfusion, we examined the temporal biochemical and structural changes occurring within the extracellular matrix of ischemic skeletal muscle. Both the latent and active forms of MMP-2 and -9 significantly increased during the active phase of limb reperfusion. Moreover, small but significant alterations in tissue inhibitors of metalloproteinase levels also occurred during a similar time course, consistent with a net increase in extracellular matrix remodeling. This temporal increase in MMP activity coincided with enhanced exposure of the unique HU177 cryptic collagen epitope. Although the HUIV26 cryptic collagen epitope has been implicated in angiogenesis, little is known concerning such epitopes within ischemic muscle tissue. Here, we provide the first evidence that a functionally distinct cryptic collagen epitope (HU177) is temporally exposed in ischemic muscle tissue during the active phase of reperfusion. Interestingly, the exposure of the HU177 epitope was greatly diminished in MMP-9 null mice, corresponding with significantly reduced limb reperfusion. Therefore, the regulated exposure of a unique cryptic collagen epitope within ischemic muscle suggests an important role for collagen remodeling during the active phase of ischemic limb reperfusion.
慢性肢体威胁性缺血是一种具有有限手术选择的毁灭性疾病。然而,诱导可控的血管生成和增强再灌注具有治疗前景。为了更好地理解促成肢体再灌注的机制,我们研究了缺血骨骼肌细胞外基质中发生的时间性生化和结构变化。在肢体再灌注的活跃期,MMP-2和-9的潜伏形式和活性形式均显著增加。此外,在相似的时间进程中,金属蛋白酶组织抑制剂水平也发生了微小但显著的变化,这与细胞外基质重塑的净增加一致。MMP活性的这种时间性增加与独特的HU177隐蔽胶原表位的暴露增强相吻合。尽管HUIV26隐蔽胶原表位与血管生成有关,但对于缺血肌肉组织中的此类表位知之甚少。在此,我们提供了首个证据,表明在再灌注活跃期,一种功能上不同的隐蔽胶原表位(HU177)在缺血肌肉组织中随时间暴露。有趣的是,在MMP-9基因敲除小鼠中,HU177表位的暴露大大减少,这与肢体再灌注显著降低相对应。因此,缺血肌肉中独特隐蔽胶原表位的调控暴露表明胶原重塑在缺血肢体再灌注活跃期具有重要作用。