Galis Zorina S, Johnson Chad, Godin Denis, Magid Richard, Shipley J Michael, Senior Robert M, Ivan Eugen
Division of Cardiology, Dept of Medicine, Emory University School of Medicine, Atlanta, Ga 30322, USA.
Circ Res. 2002 Nov 1;91(9):852-9. doi: 10.1161/01.res.0000041036.86977.14.
Matrix remodeling plays an important role in the physiological and pathological remodeling of blood vessels. We specifically investigated the role of matrix metalloproteinase (MMP)-9, an MMP induced during arterial remodeling, by assessing the effects of genetic MMP-9 deficiency on major parameters of arterial remodeling using the mouse carotid artery flow cessation model. Compared with remodeling of matched wild-type (WT) arteries, MMP-9 deficiency decreased intimal hyperplasia, reduced the late lumen loss, eliminated the correlation between intimal hyperplasia and geometric remodeling, and led to significant accumulation of interstitial collagen. Biochemical analysis of MMP-9 knockout (KO) arterial tissue and isolated smooth muscle cells (SMCs) confirmed the lack of MMP-9 expression or compensation by other gelatinases. To investigate potential mechanisms for the in vivo observations, we analyzed in vitro effects of MMP-9 deficiency on the migration, proliferation, and collagen gel contracting capacity of aortic SMCs isolated from MMP-9 KO and WT mice. Although proliferation was comparable, we found that MMP-9-deficient cells had not only decreased migratory activity, but they also had decreased capacity to contract collagen compared with WT cells. Thus, MMP-9 appears to be involved not only in degradation, but also in reorganization of a collagenous matrix, both facets being essential for the outcome of arterial remodeling. Our results also establish MMP-9 as an attractive therapeutic target for limiting the effects of pathological arterial remodeling in restenosis and atherosclerosis.
基质重塑在血管的生理和病理重塑过程中发挥着重要作用。我们通过利用小鼠颈动脉血流停止模型评估基质金属蛋白酶(MMP)-9基因缺陷对动脉重塑主要参数的影响,专门研究了动脉重塑过程中诱导产生的一种MMP,即MMP-9的作用。与匹配的野生型(WT)动脉的重塑相比,MMP-9缺陷减少了内膜增生,降低了晚期管腔丢失,消除了内膜增生与几何重塑之间的相关性,并导致间质胶原的显著积累。对MMP-9基因敲除(KO)动脉组织和分离的平滑肌细胞(SMC)进行生化分析,证实不存在MMP-9表达或其他明胶酶的代偿作用。为了研究体内观察结果的潜在机制,我们分析了MMP-9缺陷对从MMP-9 KO和WT小鼠分离的主动脉SMC迁移、增殖和胶原凝胶收缩能力的体外影响。尽管增殖情况相当,但我们发现与WT细胞相比,MMP-9缺陷细胞不仅迁移活性降低,而且收缩胶原的能力也降低。因此,MMP-9似乎不仅参与胶原基质的降解,还参与其重组,这两个方面对于动脉重塑的结果都至关重要。我们的研究结果还确立了MMP-9作为限制再狭窄和动脉粥样硬化中病理性动脉重塑影响的有吸引力的治疗靶点。