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Building a Better Infarct: Modulation of Collagen Cross-linking to Increase Infarct Stiffness and Reduce Left Ventricular Dilation post-Myocardial Infarction

机译:建立更好的梗塞:调节胶原蛋白交联以增加梗塞刚度并减少心肌梗塞后左心室扩张

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摘要

Matrix metalloproteinase-9 (MMP-9) deletion attenuates collagen accumulation and dilation of the left ventricle (LV) post-myocardial infarction (MI); however the biomechanical mechanisms underlying the improved outcome are poorly understood.The aim of this study was to determine the mechanisms whereby MMP-9 deletion alters collagen network composition and assembly in the LV post-MI to modulate the mechanical properties of myocardial scar tissue. Adult C57BL/6J wild-type (WT; n=88) and MMP-9 null (MMP-9−/−; n=92) mice of both sexes underwent permanent coronary artery ligation and were compared to day 0 controls (n=42). At day 7 post-MI, WT LVs displayed a 3-fold increase in end-diastolic volume, while MMP-9−/− showed only a 2-fold increase (p<0.05). Biaxial mechanical testing revealed that MMP-9−/− infarcts were stiffer than WT infarcts, as indicated by a 1.3-fold reduction in predicted in vivo circumferential stretch (p<0.05). Paradoxically, MMP-9−/− infarcts had a 1.8-fold reduction in collagen deposition (p<0.05). This apparent contradiction was explained by a 3.1-fold increase in lysyl oxidase (p<0.05) in MMP-9−/− infarcts, indicating that MMP-9 deletion increased collagen cross-linking activity. Furthermore, MMP-9 deletion led to a 3.0-fold increase in bone morphogenetic protein-1, the metalloproteinase that cleaves pro-collagen and pro-lysyl oxidase (p<0.05) and reduced fibronectin fragmentation by 49% (p<0.05) to enhance lysyl oxidase activity. We conclude that MMP-9 deletion increases infarct stiffness and prevents LV dilation by reducing collagen degradation and facilitating collagen assembly and cross-linking through preservation of the fibronectin network and activation of lysyl oxidase.
机译:基质金属蛋白酶9(MMP-9)的缺失减弱了心肌梗塞(MI)后胶原蛋白的积累和左心室(LV)的扩张;本研究的目的是确定MM​​P-9缺失改变MI后LV后胶原网络组成和组装的机制,以调节心肌瘢痕组织的机械性能。分别对成年C57BL / 6J野生型(WT; n = 88)和MMP-9 null(MMP-9 -/-; n = 92)的小鼠进行了永久性冠状动脉结扎术并进行了比较到第0天的对照组(n = 42)。 MI后第7天,WT LV舒张末期容积增加3倍,而MMP-9 -/-仅增加2倍(p <0.05)。双轴力学测试表明,MMP-9 -/-梗死区比WT梗死区更硬,如预期的体内周向拉伸减少1.3倍所表明(p <0.05)。矛盾的是,MMP-9 -/-梗塞的胶原蛋白沉积减少了1.8倍(p <0.05)。这种明显的矛盾可以通过在MMP-9 -/-梗塞中赖氨酰氧化酶增加3.1倍来解释(p <0.05),表明MMP-9缺失增加了胶原蛋白的交联活性。此外,MMP-9缺失导致骨形态发生蛋白-1(切割前胶原和赖氨酰氧化酶的金属蛋白酶)增加3.0倍(p <0.05),并使纤连蛋白碎片减少49%(p <0.05),增强赖氨酰氧化酶活性。我们得出的结论是,MMP-9缺失增加了梗死的硬度,并通过减少胶原蛋白的降解并促进胶原蛋白的组装和交联(通过保留纤连蛋白网络和激活赖氨酰氧化酶来防止LV扩张)。

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