Cellular adhesion and migration mechanisms have been recognized as crucial elements regulating the fate and function of all leukocytes. As such, the direct visalization of cell adhesion properties and the fine structural feature that influence these properties is central to our understanding of how white blood cells Darticipate in inflammation, hemostasisT thrombosis and immunity. The Intravital Microscopy Core has been :ormulated based on a stated need of PPG investigators and is designed to draw on the considerable experience of its key personnel to provide expertise and specialized equipment in the design and execution of in vivo imaging studies on the pathophysiological role of glycosyltransferases.
The Specific Aims of the Intravital Microscopy Core are as follows: 1. To execute and analyze intravital microscopy-based adhesion and migration studies in murine tissues. Currently available imaging models include: cremaster muscle;ear skin;bone marrow;liver;popliteal and inguinal lymph node;bladder;knee joint;and small intestine, including mesentery, Peyer's patches and lamina propria. 2. To provide access to and expertise and to conduct specific experiments utilizing multi-photon microscopy-based recording of intra- and extravascular blood cell adhesion, migration and cell-cell interactions in as many as six dimensions (i.e. space, time, color, fluorescence intensity). 4. To provide assistance in the planning, execution and analysis of blood cell homing in vivo employing defined models of inflammation. Services to be provided by the Imaging Core will allow participating investigators to investigate how defined glycosylation pathways influence blood cells interactions with their environment at a resolution ranging from single cells to intact animals.

Agency
National Institute of Health (NIH)
Institute
National Cancer Institute (NCI)
Type
Research Program Projects (P01)
Project #
5P01CA071932-12
Application #
7862439
Study Section
Special Emphasis Panel (ZCA1)
Project Start
Project End
Budget Start
2009-08-01
Budget End
2010-07-31
Support Year
12
Fiscal Year
2009
Total Cost
$245,670
Indirect Cost
Name
Sanford-Burnham Medical Research Institute
Department
Type
DUNS #
020520466
City
La Jolla
State
CA
Country
United States
Zip Code
92037
Nonaka, Motohiro; Fukuda, Michiko N; Gao, Chao et al. (2014) Determination of carbohydrate structure recognized by prostate-specific F77 monoclonal antibody through expression analysis of glycosyltransferase genes. J Biol Chem 289:16478-86
Nonaka, Motohiro; Bao, Xingfeng; Matsumura, Fumiko et al. (2014) Synthetic di-sulfated iduronic acid attenuates asthmatic response by blocking T-cell recruitment to inflammatory sites. Proc Natl Acad Sci U S A 111:8173-8
Sugihara, Kazuhiro; Shibata, Toshiaki K; Takata, Kayoko et al. (2013) Attenuation of fibroblast growth factor signaling by poly-N-acetyllactosamine type glycans. FEBS Lett 587:3195-201
Lee, Seung Ho; Fukuda, Minoru (2013) Study of the biological functions of mucin type core 3 O-glycans. Methods Mol Biol 1022:41-50
Tsuboi, Koichiro; Hirakawa, Jotaro; Seki, Emiko et al. (2013) Role of high endothelial venule-expressed heparan sulfate in chemokine presentation and lymphocyte homing. J Immunol 191:448-55
Suzuki-Anekoji, Misa; Suzuki, Atsushi; Wu, Sz-Wei et al. (2013) In vivo regulation of steroid hormones by the Chst10 sulfotransferase in mouse. J Biol Chem 288:5007-16
Okamoto, Teppei; Yoneyama, Mihoko Sutoh; Hatakeyama, Shingo et al. (2013) Core2 O-glycan-expressing prostate cancer cells are resistant to NK cell immunity. Mol Med Rep 7:359-64
Pols, Maaike S; van Meel, Eline; Oorschot, Viola et al. (2013) hVps41 and VAMP7 function in direct TGN to late endosome transport of lysosomal membrane proteins. Nat Commun 4:1361
Ito, Yuki; Vela, Jose Luis; Matsumura, Fumiko et al. (2013) Helicobacter pylori cholesteryl ?-glucosides contribute to its pathogenicity and immune response by natural killer T cells. PLoS One 8:e78191
Hatakeyama, Shingo; Shibata, Toshiaki K; Tobisawa, Yuki et al. (2013) Tumor targeting by a carbohydrate ligand-mimicking peptide. Methods Mol Biol 1022:369-86

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