The overall goal of the University of Chicago Cancer Research Center (UCCRC) is to improve the prevention, detection, and treatment of cancer through our basic, clinical, translational, and population research activities. Therefore, the effective procurement, storage, use, and analysis of human biospecimens are of critical importance. Furthermore, the maintenance and expansion of these state-ofthe- art biospecimen procurement and storage facilities is vital to the future success of our cancer programs. To address these critical needs, the existing Laser Capture Microdissection (LCM) Core Facility was dramatically expanded and renamed the Human Tissue Resource Center (HTRC) Core. The mission of the HTRC is to provide cancer investigators with a centralized infrastructure to optimize the efficiency and costs related to research involving human biospecimens. The HTRC now comprises three integrated components: Biospecimen Bank (BSB), Laser Capture Microdissection (LCM), and Pathology Image Analysis (PIA). Currently, the HTRC provides services for the collection of clinicallyannotated human tissues, as well as blood, serum, plasma, and saliva for cancer-related research. In addition, the Core provides collaborative support and services for histopathology, LCM, tissue microarray preparation (TMA), and nucleic acid extraction. In this way, we provide a coordinated, centralized, and dedicated program for the procuring, processing, dispersing, and assessing all types of biospecimens. Over 39 peer-reviewed UCCRC investigators across six Scientific Programs routinely use the HTRC, totaling 70% of Facility usage. Many of these investigators use several of the Facility's components.

Agency
National Institute of Health (NIH)
Institute
National Cancer Institute (NCI)
Type
Center Core Grants (P30)
Project #
5P30CA014599-35
Application #
8105370
Study Section
Special Emphasis Panel (ZCA1)
Project Start
Project End
Budget Start
2010-04-01
Budget End
2011-03-31
Support Year
35
Fiscal Year
2010
Total Cost
$278,660
Indirect Cost
Name
University of Chicago
Department
Type
DUNS #
005421136
City
Chicago
State
IL
Country
United States
Zip Code
60637
Szmulewitz, Russell Z; Peer, Cody J; Ibraheem, Abiola et al. (2018) Prospective International Randomized Phase II Study of Low-Dose Abiraterone With Food Versus Standard Dose Abiraterone In Castration-Resistant Prostate Cancer. J Clin Oncol 36:1389-1395
Boisclair Lachance, Jean-François; Webber, Jemma L; Hong, Lu et al. (2018) Cooperative recruitment of Yan via a high-affinity ETS supersite organizes repression to confer specificity and robustness to cardiac cell fate specification. Genes Dev 32:389-401
Kudron, Michelle M; Victorsen, Alec; Gevirtzman, Louis et al. (2018) The ModERN Resource: Genome-Wide Binding Profiles for Hundreds of Drosophila and Caenorhabditis elegans Transcription Factors. Genetics 208:937-949
Maron, Steven B; Alpert, Lindsay; Kwak, Heewon A et al. (2018) Targeted Therapies for Targeted Populations: Anti-EGFR Treatment for EGFR-Amplified Gastroesophageal Adenocarcinoma. Cancer Discov 8:696-713
Kane, Melissa; Deiss, Felicity; Chervonsky, Alexander et al. (2018) A Single Locus Controls Interferon Gamma-Independent Antiretroviral Neutralizing Antibody Responses. J Virol 92:
Zeineddine, Hussein A; Girard, Romuald; Saadat, Laleh et al. (2018) Phenotypic characterization of murine models of cerebral cavernous malformations. Lab Invest :
Gamazon, Eric R; Trendowski, Matthew R; Wen, Yujia et al. (2018) Gene and MicroRNA Perturbations of Cellular Response to Pemetrexed Implicate Biological Networks and Enable Imputation of Response in Lung Adenocarcinoma. Sci Rep 8:733
Xiao, Annie; Crosby, Jennie; Malin, Martha et al. (2018) Single-institution report of setup margins of voluntary deep-inspiration breath-hold (DIBH) whole breast radiotherapy implemented with real-time surface imaging. J Appl Clin Med Phys 19:205-213
Day, Kasey J; Casler, Jason C; Glick, Benjamin S (2018) Budding Yeast Has a Minimal Endomembrane System. Dev Cell 44:56-72.e4
Girard, Romuald; Zeineddine, Hussein A; Koskimäki, Janne et al. (2018) Plasma Biomarkers of Inflammation and Angiogenesis Predict Cerebral Cavernous Malformation Symptomatic Hemorrhage or Lesional Growth. Circ Res 122:1716-1721

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