Located in the heart of the University's medical complex, the Small Animal Cancer Imaging Core provides intellectual and physical resources devoted to magnetic resonance imaging (MRI), positron emission tomography, (PET), and optical tomography (OT) directed toward small laboratory animals such as hamsters, rats and mice. MRI resources include a high-field 11.7 tesla multinuclear scanner, one of only a few worldwide, and three 4.7 tesia multinuclear scanners. Recent upgrades of electronics consoles, gradient coils, and gradient power supplies, have restored these instruments to state-of-the-art quality. The PET/CT Component is centered on two microPET scanners from Siemens Medical, including a newly acquired, state-of-the-art Inveon microPET-CT instrument. Two cyclotrons and an associated radiochemistry laboratory are connected to the PET facility via a pneumatic tube system and a small-bore gas line for transport of liquid (contained in syringes) and gaseous radiopharmaceuticals. Both MRI and PET scanners offer sensitivity and resolution optimized for small-animal research. Additional resources for support of small-animal imaging include housing, physiologic support and monitoring equipment, surgical procedure rooms, wet chemistry laboratories, and data analysis and archival systems. The Core provides Siteman Cancer Center members with the latest in small-animal MRI, PET, and OT capabilities. Highly skilled staff members are available to assist, advise, and collaborate on projects of interest to Siteman members. For the last five years, the Small Animal Cancer Imaging Core has been supported primarily through the National Cancer Institute (NCI) Small Animal Imaging Resource Program (SAIRP). Washington University Small Animal Imaging Resource (WUSAIR) was one of the original five SAIRP centers, established in 1999, and received ~$3 million in total support from 2004 to 2009.

Public Health Relevance

MRI and PET are widely employed in the clinic;thus, new MR and PET imaging technology developed in the Small Animal Imaging Core can be seamlessly and immediately translated to the clinic for the direct benefit of cancer patients. In addition, the Core provides imaging platforms for pre-clinical development and assessment of new therapies for cancer treatment.

Agency
National Institute of Health (NIH)
Institute
National Cancer Institute (NCI)
Type
Center Core Grants (P30)
Project #
5P30CA091842-13
Application #
8705881
Study Section
Subcommittee B - Comprehensiveness (NCI)
Project Start
Project End
Budget Start
2014-07-01
Budget End
2015-06-30
Support Year
13
Fiscal Year
2014
Total Cost
Indirect Cost
Name
Washington University
Department
Type
DUNS #
City
Saint Louis
State
MO
Country
United States
Zip Code
63130
Olfson, Emily; Bloom, Joseph; Bertelsen, Sarah et al. (2018) CYP2A6 metabolism in the development of smoking behaviors in young adults. Addict Biol 23:437-447
Betleja, Ewelina; Nanjundappa, Rashmi; Cheng, Tao et al. (2018) A novel Cep120-dependent mechanism inhibits centriole maturation in quiescent cells. Elife 7:
Chen, Li-Shiun; Horton, Amy; Bierut, Laura (2018) Pathways to precision medicine in smoking cessation treatments. Neurosci Lett 669:83-92
Celik, Hamza; Koh, Won Kyun; Kramer, Ashley C et al. (2018) JARID2 Functions as a Tumor Suppressor in Myeloid Neoplasms by Repressing Self-Renewal in Hematopoietic Progenitor Cells. Cancer Cell 34:741-756.e8
Kabir, Ashraf Ul; Lee, Tae-Jin; Pan, Hua et al. (2018) Requisite endothelial reactivation and effective siRNA nanoparticle targeting of Etv2/Er71 in tumor angiogenesis. JCI Insight 3:
Hirbe, Angela C; Jennings, Jack; Saad, Nael et al. (2018) A Phase II Study of Tumor Ablation in Patients with Metastatic Sarcoma Stable on Chemotherapy. Oncologist 23:760-e76
Jenkins, Wiley D; Gilbert, David; Chen, Li-Shiun et al. (2018) Finding paths with the greatest chance of success: enabling and focusing lung cancer screening and cessation in resource-constrained areas. Transl Lung Cancer Res 7:S261-S264
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
Smith, Lee; Ae Lee, Jung; Mun, Junbae et al. (2018) Levels and patterns of self-reported and objectively-measured free-living physical activity among prostate cancer survivors: A prospective cohort study. Cancer :
Burclaff, Joseph; Mills, Jason C (2018) Plasticity of differentiated cells in wound repair and tumorigenesis, part II: skin and intestine. Dis Model Mech 11:

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