Lesions of atherosclerosis become thickened and lead to clinical sequelae as a result of cell accumulation, connective tissue matrix formation, and an increase in intracellular and extracellular lipid. This program has identified many of these cellular changes and has defined specific changes in the extracellular matrix (ECM) that are associated with lesions and growth factor stimulation of vascular cells. An extension of these observations that many of these changes in the extracellular environment may promote lesion progression. The overall objective of this program project is to identify key regulatory elements transduced by the extracellular environment, both extracellular (Projects 1, 2, 4, 5, 6, 7) and intracellular the intimal accumulation of multiple cell types which are all being studied in our program: Lesions of atherosclerosis are due to the intimal accumulation of multiple cell types which are all being studied in our program: circulating cells (Project 4) that adhere and migrate across the endothelium; smooth muscle cells (Projects 1, 2, 6) that migrate from the media into the forming intima; and endothelial formation of neo- vessels (Projects 3, 4, 7) in advanced lesions that helps maintain the infiltration of inflammatory cells. Cell-cell (Project 4) and cell-matrix (Projects 1, 2, 3, 4, 6, 7) interactions, as well as intracellular and extracellular lipid accumulation (Project 5), are key regulators of the adhesion, migration, apoptosis, and proliferation that lead to the cell accumulation. To identify molecular mechanisms, endothelium, smooth muscle, and leukocytes will be probed in vitro (Projects 1, 2, 3, 4, 5, 6, 7), but their significance will also be tested in vivo (Projects 1, 2, 3, 4, 6, 7). By identifying key regulatory signals transduced by the extracellular environment, the proposed studies may suggest new approaches to the treatment of atherosclerosis and its complications.

Agency
National Institute of Health (NIH)
Institute
National Heart, Lung, and Blood Institute (NHLBI)
Type
Research Program Projects (P01)
Project #
5P01HL018645-30
Application #
6792150
Study Section
Heart, Lung, and Blood Initial Review Group (HLBP)
Program Officer
Wassef, Momtaz K
Project Start
1985-09-30
Project End
2006-01-31
Budget Start
2004-09-01
Budget End
2006-01-31
Support Year
30
Fiscal Year
2004
Total Cost
$2,340,054
Indirect Cost
Name
University of Washington
Department
Pathology
Type
Schools of Medicine
DUNS #
605799469
City
Seattle
State
WA
Country
United States
Zip Code
98195
Wight, Thomas N (2018) A role for proteoglycans in vascular disease. Matrix Biol 71-72:396-420
Kocarnik, Beverly M; Boyko, Edward J; Matsumoto, Alvin M et al. (2016) Baseline estradiol concentration in community-dwelling Japanese American men is not associated with intra-abdominal fat accumulation over 10 years. Obes Res Clin Pract 10:624-632
Nishizawa, Tomohiro; Kanter, Jenny E; Kramer, Farah et al. (2014) Testing the role of myeloid cell glucose flux in inflammation and atherosclerosis. Cell Rep 7:356-365
Wight, Thomas N; Kinsella, Michael G; Evanko, Stephen P et al. (2014) Versican and the regulation of cell phenotype in disease. Biochim Biophys Acta 1840:2441-51
Kang, Inkyung; Yoon, Dong Won; Braun, Kathleen R et al. (2014) Expression of versican V3 by arterial smooth muscle cells alters tumor growth factor ? (TGF?)-, epidermal growth factor (EGF)-, and nuclear factor ?B (NF?B)-dependent signaling pathways, creating a microenvironment that resists monocyte adhesion. J Biol Chem 289:15393-404
Ruppert, S M; Hawn, T R; Arrigoni, A et al. (2014) Tissue integrity signals communicated by high-molecular weight hyaluronan and the resolution of inflammation. Immunol Res 58:186-92
Wight, Thomas N; Kang, Inkyung; Merrilees, Mervyn J (2014) Versican and the control of inflammation. Matrix Biol 35:152-61
Tsubota, Yoshiaki; Frey, Jeremy M; Tai, Phillip W L et al. (2013) Monocyte ADAM17 promotes diapedesis during transendothelial migration: identification of steps and substrates targeted by metalloproteinases. J Immunol 190:4236-44
Cieslewicz, Maryelise; Tang, Jingjing; Yu, Jonathan L et al. (2013) Targeted delivery of proapoptotic peptides to tumor-associated macrophages improves survival. Proc Natl Acad Sci U S A 110:15919-24
Lund, Susan Amanda; Wilson, Carole L; Raines, Elaine W et al. (2013) Osteopontin mediates macrophage chemotaxis via ?4 and ?9 integrins and survival via the ?4 integrin. J Cell Biochem 114:1194-202

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