The Small Animal Imaging Core supports the transdisciplinary translational efforts of Cancer Center members at USC Norris. Led by Dr. Peter Conti since 2007, the Core provides: 1) small animal and specimen imaging services, including PET (Positron Emission Tomography), CT (Computed Tomography), ultrasound, optical, X-ray, and digital autoradiography; 2) image processing and data analysis services; 3) guidance on study design and protocol development and submissions to IACUC (Institutional Animal Care and Use Committee), Radiation Safety Committee, and Institutional Biosafety Committee; and 4) education and training on animal imaging and its impact on translational cancer research. Cancer Center members with peer-reviewed funding are the primary users of this Core. Through small animal imaging, they are able to combine traditional approaches to cancer research and show application in a translational setting. Noninvasive and nonlethal techniques reduce variability in data and allow users to monitor animal models over periods of time thereby reducing the costs associated with using large numbers of animals. By enabling single-point access to novel technology, the Core has fostered transdisciplinary efforts for cancer research at USC Norris. Continual upgrades to imaging equipment and software, as well as education of Cancer Center members in novel methodologies, have enhanced their cancer imaging capabilities and overall research efforts. In FY 2013-2014, 19 peer-review funded members used the Core, representing 68% of total users. The Core continues to grow and will be adding new imaging modalities (e.g., Mediso nanoScan PET/CT) during the next project period.

Agency
National Institute of Health (NIH)
Institute
National Cancer Institute (NCI)
Type
Center Core Grants (P30)
Project #
3P30CA014089-45S7
Application #
10303168
Study Section
Subcommittee H - Clinical Groups (NCI)
Program Officer
He, Min
Project Start
1996-12-01
Project End
2021-11-30
Budget Start
2019-12-01
Budget End
2020-11-30
Support Year
45
Fiscal Year
2021
Total Cost
Indirect Cost
Name
University of Southern California
Department
Type
DUNS #
072933393
City
Los Angeles
State
CA
Country
United States
Zip Code
90089
Sebio, A; Stintzing, S; Heinemann, V et al. (2018) A genetic variant in Rassf1a predicts outcome in mCRC patients treated with cetuximab plus chemotherapy: results from FIRE-3 and JACCRO 05 and 06 trials. Pharmacogenomics J 18:43-48
Peres, Lauren C; Risch, Harvey; Terry, Kathryn L et al. (2018) Racial/ethnic differences in the epidemiology of ovarian cancer: a pooled analysis of 12 case-control studies. Int J Epidemiol 47:460-472
Peddi, Santosh; Pan, Xiaoli; MacKay, John Andrew (2018) Intracellular Delivery of Rapamycin From FKBP Elastin-Like Polypeptides Is Consistent With Macropinocytosis. Front Pharmacol 9:1184
Guo, Hao; Lee, Changrim; Shah, Mihir et al. (2018) A novel elastin-like polypeptide drug carrier for cyclosporine A improves tear flow in a mouse model of Sjögren's syndrome. J Control Release 292:183-195
Zhao, Yi; Wu, Kaijin; Wu, Yongfeng et al. (2018) Characterization of Imatinib Resistant CML Leukemic Stem/Initiating Cells and Their Sensitivity to CBP/Catenin Antagonists. Curr Mol Pharmacol 11:113-121
Kahn, Michael (2018) Wnt Signaling in Stem Cells and Cancer Stem Cells: A Tale of Two Coactivators. Prog Mol Biol Transl Sci 153:209-244
Park, Sungshim L; Patel, Yesha M; Loo, Lenora W M et al. (2018) Association of internal smoking dose with blood DNA methylation in three racial/ethnic populations. Clin Epigenetics 10:110
Liu, Jie; Liang, Gangning; Siegmund, Kimberly D et al. (2018) Data integration by multi-tuning parameter elastic net regression. BMC Bioinformatics 19:369
McDonnell, Kevin J; Chemler, Joseph A; Bartels, Phillip L et al. (2018) A human MUTYH variant linking colonic polyposis to redox degradation of the [4Fe4S]2+ cluster. Nat Chem 10:873-880
Schirripa, Marta; Zhang, Wu; Yang, Dongyun et al. (2018) NOS2 polymorphisms in prediction of benefit from first-line chemotherapy in metastatic colorectal cancer patients. PLoS One 13:e0193640

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