Abstract
Cytokine and extracellular matrix (ECM) homeostasis are distinct systems that are each dysregulated in heart failure. Here we show that tissue inhibitor of metalloproteinase (TIMP)-3 is a critical regulator of both systems in a mouse model of left ventricular (LV) dilation and dysfunction. Timp-3-/- mice develop precipitous LV dilation and dysfunction reminiscent of dilated cardiomyopathy (DCM), culminating in early onset of heart failure by 6 weeks, compared with wild-type aortic-banding (AB). Timp-3 deficiency resulted in increased TNFα converting enzyme (TACE) activity within 6 hours after AB leading to enhanced tumor necrosis factor-α (TNFα) processing. In addition, TNFα production increased in timp-3-/--AB myocardium. A significant elevation in gelatinase and collagenase activities was observed 1 week after AB, with localized ECM degradation in timp-3-/--AB myocardium. Timp-3-/-/ tnfα-/- mice were generated and subjected to AB for comparative analyses with timp-3-/--AB mice. This revealed the critical role of TNFα in the early phase of LV remodeling, de novo expression of Matrix metalloproteinases (MMP)-8 in the absence of TNFα, and highlighted the importance of interstitial collagenases (MMP-2, MMP-13, and MT1-MMP) for cardiac ECM degradation. Ablation of TNFα, or limiting MMP activity with a synthetic MMP inhibitor (PD166793), each partially attenuated LV dilation and cardiac dysfunction in timp-3-/--AB mice. Notably, combining TNFα ablation with MMP inhibition completely rescued heart disease in timp-3-/--AB mice. This study provides a basis for anti-TNFα and MMP inhibitor combination therapy in heart disease. © 2005 American Heart Association, Inc.
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Kassiri, Z., Oudit, G. Y., Sanchez, O., Dawood, F., Mohammed, F. F., Nuttall, R. K., … Khokha, R. (2005). Combination of tumor necrosis factor-α ablation and matrix metalloproteinase inhibition prevents heart failure after pressure overload in tissue inhibitor of metalloproteinase-3 knock-out mice. Circulation Research, 97(4), 380–390. https://doi.org/10.1161/01.RES.0000178789.16929.cf
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