Ground-breaking molecular imaging studies have visualized gene expression, biochemical reactions, signal transduction and regulatory pathways in living cells and whole organisms in vivo. The Washington University Molecular Imaging Center directs major efforts into fundamental, translational and clinical research under the theme of imaging signal transduction and therapeutics in cancer using novel techniques and probes in combination with genetically-encoded reporters to pinpoint molecular events within target cells. The Washington University Molecular Imaging Center activities have spurred an explosion of collaborative, interdisciplinary research projects that have formed the foundation for exciting new directions in molecular imaging. A dedicated team of investigators have demonstrated an exceptional record of collaboration outside their own disciplines leading to an escalating interest in applying novel genetically- encoded reporter strategies that allow the molecular characterization of cancer in vivo for basic research as well as diagnostic and prognostic clinical applications. In particular, this has lead to a major theme to study regulated signal transduction and protein processing in living organisms. The principal research projects address imaging of Notch signaling in cancer, investigate metabolic stress and checkpoint controls as targets for anticancer therapy, investigate the interaction of inflammation and viral-induced tumorigenicity in doubly transgenic reporter mice, and monitor trafficking of genetically-modified cells with PET during epigenetic modulation of donor lymphocytes in a clinical study of patients undergoing bone marrow transplant. The program also includes three molecular imaging scientific resources: the molecular imaging reporter core, chemistry core and high throughput screening robotics core, founded on molecular imaging platforms for readout of a wide range of bio-assays, including siRNA library screens, and chemical genetics. Our Molecular Imaging Center also provides a pilot project program for new investigators and a multidisciplinary training program for students, post-docs, and fellows.

Agency
National Institute of Health (NIH)
Institute
National Cancer Institute (NCI)
Type
Specialized Center (P50)
Project #
2P50CA094056-12
Application #
8181436
Study Section
Special Emphasis Panel (ZCA1-SRLB-9 (M1))
Program Officer
Menkens, Anne E
Project Start
2002-05-31
Project End
2016-12-31
Budget Start
2012-08-27
Budget End
2012-12-31
Support Year
12
Fiscal Year
2012
Total Cost
$1,428,925
Indirect Cost
$627,413
Name
Washington University
Department
Radiation-Diagnostic/Oncology
Type
Schools of Medicine
DUNS #
068552207
City
Saint Louis
State
MO
Country
United States
Zip Code
63130
Murali, Bhavna; Ren, Qihao; Luo, Xianmin et al. (2018) Inhibition of the Stromal p38MAPK/MK2 Pathway Limits Breast Cancer Metastases and Chemotherapy-Induced Bone Loss. Cancer Res 78:5618-5630
Miller, Jessica; Wang, Steven T; Orukari, Inema et al. (2018) Perfusion-based fluorescence imaging method delineates diverse organs and identifies multifocal tumors using generic near-infrared molecular probes. J Biophotonics 11:e201700232
Zacharias, Niki; Lee, Jaehyuk; Ramachandran, Sumankalai et al. (2018) Androgen Receptor Signaling in Castration-Resistant Prostate Cancer Alters Hyperpolarized Pyruvate to Lactate Conversion and Lactate Levels In Vivo. Mol Imaging Biol :
Cherian, Mathew A; Olson, Sydney; Sundaramoorthi, Hemalatha et al. (2018) An activating mutation of interferon regulatory factor 4 (IRF4) in adult T-cell leukemia. J Biol Chem 293:6844-6858
Hövener, Jan-Bernd; Pravdivtsev, Andrey N; Kidd, Bryce et al. (2018) Parahydrogen-Based Hyperpolarization for Biomedicine. Angew Chem Int Ed Engl 57:11140-11162
Bauerle, Kevin T; Hutson, Irina; Scheller, Erica L et al. (2018) Glucocorticoid Receptor Signaling Is Not Required for In Vivo Adipogenesis. Endocrinology 159:2050-2061
Prudner, Bethany Cheree; Sun, Fangdi; Kremer, Jeffrey Charles et al. (2018) Amino Acid Uptake Measured by [18F]AFETP Increases in Response to Arginine Starvation in ASS1-Deficient Sarcomas. Theranostics 8:2107-2116
Meinerz, Kelsey; Beeman, Scott C; Duan, Chong et al. (2018) Bayesian Modeling of NMR Data: Quantifying Longitudinal Relaxation in Vivo, and in Vitro with a Tissue-Water-Relaxation Mimic (Crosslinked Bovine Serum Albumin). Appl Magn Reson 49:3-24
Zheleznyak, Alexander; Shokeen, Monica; Achilefu, Samuel (2018) Nanotherapeutics for multiple myeloma. Wiley Interdiscip Rev Nanomed Nanobiotechnol 10:e1526
Choi, Jaebok; Cooper, Matthew L; Staser, Karl et al. (2018) Baricitinib-induced blockade of interferon gamma receptor and interleukin-6 receptor for the prevention and treatment of graft-versus-host disease. Leukemia 32:2483-2494

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