Core B is the central cell culture and vector facility, which will provide support for each of four projects. This core facility will provide services for the following: 1) isolation of neutrophils from human and mouse blood; 2) isolation , charcterization, and culture of mouse lung endothelial cells; 3) culture of human lung micro vascular and pulmonary artery endothelial cells; 4) preparation of recombinant adenovirus expression constructs; 5) amplifying recombinant adenovirus constructs, and 6) infection of primary endothelial cells with recombinant adenoviruses for the experiments involved in the Projects as outlined in the Core description below. Mouse lung endothelial cell isolation and culture is pivotal for the accomplishment of studies proposed in Projects 1,3, and 4. In addition, these three projects will require human lung microvascular and pulmonary artery endothelial cells. The core will also isolate neutrophils from human and mouse blood for all projects. A major task of this core will be to provide viral expression constructs for the Projects 1,3, and 4. This core will also provide neutrophils and endothelial cells for the studies in Project 2. In addition, this Core is critical for providing endothelial cells from different knockout mice; e.g., NADPH oxidase (gp91 and p47 knockout), PKC-zeta knockout mice for Projects 1 and 4, TRPC4 knockout mice for Project 3, and TLR4 knockout mice for Project 4. The activity of this Core is essential for the successs of the Program Project.

Agency
National Institute of Health (NIH)
Institute
National Heart, Lung, and Blood Institute (NHLBI)
Type
Research Program Projects (P01)
Project #
5P01HL077806-02
Application #
7312602
Study Section
Heart, Lung, and Blood Initial Review Group (HLBP)
Project Start
2006-08-01
Project End
2010-07-31
Budget Start
2006-08-01
Budget End
2007-07-31
Support Year
2
Fiscal Year
2006
Total Cost
$236,803
Indirect Cost
Name
University of Illinois at Chicago
Department
Type
DUNS #
098987217
City
Chicago
State
IL
Country
United States
Zip Code
60612
Lv, Yang; Kim, Kyungho; Sheng, Yue et al. (2018) YAP Controls Endothelial Activation and Vascular Inflammation Through TRAF6. Circ Res 123:43-56
Di, Anke; Xiong, Shiqin; Ye, Zhiming et al. (2018) The TWIK2 Potassium Efflux Channel in Macrophages Mediates NLRP3 Inflammasome-Induced Inflammation. Immunity 49:56-65.e4
Dai, Zhiyu; Zhu, Maggie M; Peng, Yi et al. (2018) Endothelial and Smooth Muscle Cell Interaction via FoxM1 Signaling Mediates Vascular Remodeling and Pulmonary Hypertension. Am J Respir Crit Care Med 198:788-802
Marsboom, Glenn; Chen, Zhenlong; Yuan, Yang et al. (2017) Aberrant caveolin-1-mediated Smad signaling and proliferation identified by analysis of adenine 474 deletion mutation (c.474delA) in patient fibroblasts: a new perspective on the mechanism of pulmonary hypertension. Mol Biol Cell 28:1177-1185
Mittal, Manish; Nepal, Saroj; Tsukasaki, Yoshikazu et al. (2017) Neutrophil Activation of Endothelial Cell-Expressed TRPM2 Mediates Transendothelial Neutrophil Migration and Vascular Injury. Circ Res 121:1081-1091
Yamada, Kaori H; Kang, Hojin; Malik, Asrar B (2017) Antiangiogenic Therapeutic Potential of Peptides Derived from the Molecular Motor KIF13B that Transports VEGFR2 to Plasmalemma in Endothelial Cells. Am J Pathol 187:214-224
Zhang, Lianghui; Jambusaria, Ankit; Hong, Zhigang et al. (2017) SOX17 Regulates Conversion of Human Fibroblasts Into Endothelial Cells and Erythroblasts by Dedifferentiation Into CD34+Progenitor Cells. Circulation 135:2505-2523
Yazbeck, Pascal; Tauseef, Mohammad; Kruse, Kevin et al. (2017) STIM1 Phosphorylation at Y361 Recruits Orai1 to STIM1 Puncta and Induces Ca2+ Entry. Sci Rep 7:42758
Wu, Chaomin; Evans, Colin E; Dai, Zhiyu et al. (2017) Lipopolysaccharide-induced endotoxemia in corn oil-preloaded mice causes an extended course of lung injury and repair and pulmonary fibrosis: A translational mouse model of acute respiratory distress syndrome. PLoS One 12:e0174327
Dai, Zhiyu; Zhao, You-Yang (2017) Discovery of a murine model of clinical PAH: Mission impossible? Trends Cardiovasc Med 27:229-236

Showing the most recent 10 out of 103 publications