Deep venous thrombosis (DVT) affects more than 2 million Americans per year. Post-phlebitic syndrome can affect 25-75% of patients following DVT and includes leg swelling, pain, skin changes and ulceration of the skin. This develops only in a subset of DVT patients, suggesting that thrombus resolution is critical in determining whether chronic venous obstruction and fibrosis will develop and lead to post-phlebitic syndrome. Matrix metalloproteinase (MMP) genes, critical to cell migration and tissue remodeling, are expressed and activated during thrombus resolution suggesting a critical role in this process. Their role in the pathogenesis of post-phlebitic syndrome will be defined with three Specific Aims: 1) To define the regions of the MMP-2 gene and cognate transcription factors critical to thrombus-induced MMP-2 expression, 2) To determine the role of MMP-2, MMP-9 and MMP-14 (MT-MMP-f) in DVT resolution and thrombus-induced vein wall fibrosis, 3) To determine if overexpression of MMP proteins (MMP-2, MMP-9 and MMP-14) accelerates DVT resolution and alters thrombus-induced vein wall fibrosis. A unique series of transgenic MMP-2 reporter mice will be used to determine which regions of the MMP-2 gene are essential for thrombus-induced MMP-2 transcription and chromatin immunoprecipitation will be used to identity the cognate transcription factors. Mice with targeted deletion of various MMP genes will be used to determine the role of these enzymes in thrombus recanalization, vein wall fibrosis and loss of vein wall compliance and elasticity using novel assays of mouse vein biomechanics.Tissue-specific transgenic overexpression of MMP-2, -14 and -9 as well as adenoviral vectors encoding these isoforms will be utilized to overexpress these proteins during thrombus resolution to determine resolution of DVT is accelerated and the effects on fibrosis and vein wall biomechanics.These studies will define the role of MMP proteins in the beneficial and detrimental aspects of thrombus resolution, and characterize potential molecular therapy to prevent post- phlebitic syndrome.

Public Health Relevance

This proposalwill determine how matrix metalloproteinase proteins cause scarring and thickening of veins after blood clots, which can cause later leg pain, swelling and ulcers. These studies will increase knowledge of how veins are damaged by clots and test new treatments to prevent this damage.

Agency
National Institute of Health (NIH)
Institute
National Heart, Lung, and Blood Institute (NHLBI)
Type
Research Project (R01)
Project #
3R01HL083917-02S1
Application #
7464343
Study Section
Special Emphasis Panel (ZHL1-CSR-I (F1))
Program Officer
Kindzelski, Andrei L
Project Start
2006-05-12
Project End
2010-03-31
Budget Start
2007-04-01
Budget End
2008-03-31
Support Year
2
Fiscal Year
2007
Total Cost
$88,256
Indirect Cost
Name
Northern California Institute Research & Education
Department
Type
DUNS #
613338789
City
San Francisco
State
CA
Country
United States
Zip Code
94121
Mukhopadhyay, Subhradip; Antalis, Toni M; Nguyen, Khanh P et al. (2017) Myeloid p53 regulates macrophage polarization and venous thrombus resolution by inflammatory vascular remodeling in mice. Blood 129:3245-3255
Nguyen, Khanh P; McGilvray, Kirk C; Puttlitz, Christian M et al. (2015) Matrix Metalloproteinase 9 (MMP-9) Regulates Vein Wall Biomechanics in Murine Thrombus Resolution. PLoS One 10:e0139145
Chabasse, Christine; Siefert, Suzanne A; Chaudry, Mohammed et al. (2015) Recanalization and flow regulate venous thrombus resolution and matrix metalloproteinase expression in vivo. J Vasc Surg Venous Lymphat Disord 3:64-74
Gabre, J; Chabasse, C; Cao, C et al. (2014) Activated protein C accelerates venous thrombus resolution through heme oxygenase-1 induction. J Thromb Haemost 12:93-102
Siefert, S A; Chabasse, C; Mukhopadhyay, S et al. (2014) Enhanced venous thrombus resolution in plasminogen activator inhibitor type-2 deficient mice. J Thromb Haemost 12:1706-16
McGilvray, Kirk C; Sarkar, Rajabrata; Nguyen, Khanh et al. (2010) A biomechanical analysis of venous tissue in its normal and post-phlebitic conditions. J Biomech 43:2941-7
Vartanian, Shant M; Sarkar, Rajabrata (2007) Therapeutic angiogenesis. Vasc Endovascular Surg 41:173-85