The Cell and Tissue Imaging Core Facility is entering its 11th year of operation. David R. Hinton M.D., Core Director, and Ernesto Barron, Core Manager, have led this shared use facility since its inception. Its mission, as developed by the Cancer Center Executive Committee, is to provide advanced cell and tissue imaging technology, services, and scientific consultation that facilitate scientific interaction and enhance scientific productivity of Cancer Center investigators. The Core was originally developed as a partnership between the USC Norris Comprehensive Cancer Center (NCCC) and the Doheny Eye Institute;in the past two years, the University of Southern California has joined the partnership by providing $1.5 million in Provost funds for purchase of new equipment. The 2,000 sq. ft. laboratory space for this Core is provided by the Doheny Eye Institute at no cost to the Cancer Center. Cancer Center users have priority access to the Core. All funds requested in this proposal are for costs directly related to the Cancer Center's use of the Core. The major users of this Core are Cancer Center investigators with peer-reviewed, funded projects. The Core is also open to other Cancer Center members who need its facilities to develop pilot project data. In the past year, the Core was utilized by 36 investigators from nine Cancer Center programs. The Facility is open 24 hours/day, 7 days/week, with on-site technical support available 9 hrs/day (weekdays). In the past funding period, the Core has successfully implemented an online chargeback system for user fees. A wide range of sophisticated imaging equipment and services is available to Cancer Center members including laser scanning confocal/multiphoton microscopy, live cell spinning disk confocal imaging, transmission electron microscopy (TEM), scanning electron microscopy (SEM), digital light and fluorescence microscopy, fluorescence and bright field laser capture microdissection, thin sectioning, cryo-sectioning and embedding techniques, and computer aided graphics. In 2008, institutional funds from the USC Provost were obtained to obtain new """"""""state of the art"""""""" instruments including a PerkinEImer Spinning Disk Confocal with live cell imaging capability, a JEOL 200kV JEM-2100 LaB6 TEM with cryo-EM capability, and a JEOL JSM- 6390V/LGS Variable Pressure SEM. In the past 18 months, we have provided extensive training on the new equipment including nine group training sessions and >100 individual training sessions. We are continuously upgrading our imaging software (Velocity, deconvolution) and advising and instructing Cancer Center investigators in novel methodologies and protocols to enhance their cell and tissue imaging capability.

Public Health Relevance

Investigators at NCCC often need to image cells and tissues as part of their cancer research. Many of the sophisticated state-of-the-art imaging instruments that best support their needs are too expensive to be purchased by individual labs and require specialized technical support. The Cell and Tissue Imaging Core Facility is a shared resource that provides the equipment, training and expertise to facilitate this cancer research.

Agency
National Institute of Health (NIH)
Institute
National Cancer Institute (NCI)
Type
Center Core Grants (P30)
Project #
5P30CA014089-39
Application #
8589350
Study Section
Subcommittee G - Education (NCI)
Project Start
Project End
Budget Start
2013-12-01
Budget End
2014-11-30
Support Year
39
Fiscal Year
2014
Total Cost
$153,282
Indirect Cost
$55,776
Name
University of Southern California
Department
Type
DUNS #
072933393
City
Los Angeles
State
CA
Country
United States
Zip Code
90089
Liu, Minmin; Zhang, Lian; Li, Hongtao et al. (2018) Integrative Epigenetic Analysis Reveals Therapeutic Targets to the DNA Methyltransferase Inhibitor Guadecitabine (SGI-110) in Hepatocellular Carcinoma. Hepatology 68:1412-1428
Miller, Kimberly A; Ramirez, Cynthia N; Wojcik, Katherine Y et al. (2018) Prevalence and correlates of health information-seeking among Hispanic and non-Hispanic childhood cancer survivors. Support Care Cancer 26:1305-1313
Belic, Jelena; Graf, Ricarda; Bauernhofer, Thomas et al. (2018) Genomic alterations in plasma DNA from patients with metastasized prostate cancer receiving abiraterone or enzalutamide. Int J Cancer 143:1236-1248
Tobin, Jessica; Allem, Jon-Patrick; Slaughter, Rhona et al. (2018) Posttraumatic growth among childhood cancer survivors: Associations with ethnicity, acculturation, and religious service attendance. J Psychosoc Oncol 36:175-188
Schaal, Justin B; Maretzky, Thorsten; Tran, Dat Q et al. (2018) Macrocyclic ?-defensins suppress tumor necrosis factor-? (TNF-?) shedding by inhibition of TNF-?-converting enzyme. J Biol Chem 293:2725-2734
Iriondo, Oihana; Liu, Yarong; Lee, Grace et al. (2018) TAK1 mediates microenvironment-triggered autocrine signals and promotes triple-negative breast cancer lung metastasis. Nat Commun 9:1994
Robison, Nathan J; Yeo, Kee Kiat; Berliner, Adrian P et al. (2018) Phase I trial of dasatinib, lenalidomide, and temozolomide in children with relapsed or refractory central nervous system tumors. J Neurooncol 138:199-207
Naseem, Madiha; Barzi, Afsaneh; Brezden-Masley, Christine et al. (2018) Outlooks on Epstein-Barr virus associated gastric cancer. Cancer Treat Rev 66:15-22
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

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