? MOLECULAR AND TRANSLATIONAL IMAGING CORE The Molecular and Translational Imaging Core (MTIC) provides Lurie Cancer Center (LCC) members with multi- modal imaging capabilities that support their cancer research by enabling users to apply advanced imaging technologies to their preclinical and clinical studies. The ability to track injected or engrafted cells, administered agents, and tumor growth and metastasis in a non-invasive fashion is an invaluable tool in the development and testing of new diagnostic and therapeutic agents that can improve patient care. The MTIC has sites on both the Evanston and Chicago campuses. Instrumentation that is available to users at one or both sites includes MRI, PET/CT, SPECT/CT, and IVIS (fluorescent, bioluminescent and near infrared optical imaging). The MTIC provides expert staff in each of these modalities and allows investigators to apply the most appropriate imaging methods to their cancer studies. The MTIC collaborates closely with other LCC core facilities, including the Developmental Therapeutics Core, the Flow Cytometry Core, and the Mouse Histology and Phenotyping Core. During the most recent reporting period, MTIC scientific and technical staff provided support to 45 LCC users, 43 of whom had peer-reviewed funding. The scheduled installation of a radiochemistry production facility on the Chicago campus, and plans by the MTIC to offer additional, state-of- the-art imaging modalities during the next CCSG cycle, will further increase the value of this facility to Lurie Cancer Center members.

Agency
National Institute of Health (NIH)
Institute
National Cancer Institute (NCI)
Type
Center Core Grants (P30)
Project #
2P30CA060553-24
Application #
9571304
Study Section
Special Emphasis Panel (ZCA1)
Project Start
Project End
Budget Start
2018-08-10
Budget End
2019-07-31
Support Year
24
Fiscal Year
2018
Total Cost
Indirect Cost
Name
Northwestern University at Chicago
Department
Type
DUNS #
005436803
City
Chicago
State
IL
Country
United States
Zip Code
60611
Hong, Bong Jin; Iscen, Aysenur; Chipre, Anthony J et al. (2018) Highly Stable, Ultrasmall Polymer-Grafted Nanobins (usPGNs) with Stimuli-Responsive Capability. J Phys Chem Lett 9:1133-1139
Smith, Erica D; Garza-Gongora, Arturo G; MacQuarrie, Kyle L et al. (2018) Interstitial telomeric loops and implications of the interaction between TRF2 and lamin A/C. Differentiation 102:19-26
Hsiao, Hsi-Min; Fernandez, Ramiro; Tanaka, Satona et al. (2018) Spleen-derived classical monocytes mediate lung ischemia-reperfusion injury through IL-1?. J Clin Invest 128:2833-2847
Mehta, Amol; Awah, Chidiebere U; Sonabend, Adam M (2018) Topoisomerase II Poisons for Glioblastoma; Existing Challenges and Opportunities to Personalize Therapy. Front Neurol 9:459
Brown, Jessica H; Das, Prativa; DiVito, Michael D et al. (2018) Nanofibrous PLGA electrospun scaffolds modified with type I collagen influence hepatocyte function and support viability in vitro. Acta Biomater 73:217-227
Ntai, Ioanna; Fornelli, Luca; DeHart, Caroline J et al. (2018) Precise characterization of KRAS4b proteoforms in human colorectal cells and tumors reveals mutation/modification cross-talk. Proc Natl Acad Sci U S A 115:4140-4145
Wiwatpanit, Teerawat; Remis, Natalie N; Ahmad, Aisha et al. (2018) Codeficiency of Lysosomal Mucolipins 3 and 1 in Cochlear Hair Cells Diminishes Outer Hair Cell Longevity and Accelerates Age-Related Hearing Loss. J Neurosci 38:3177-3189
Malik, Neha; Iyamu, Iredia D; Scheidt, Karl A et al. (2018) Synthesis of a novel fused pyrrolodiazepine-based library with anti-cancer activity. Tetrahedron Lett 59:1513-1516
Wong, Yvette C; Ysselstein, Daniel; Krainc, Dimitri (2018) Mitochondria-lysosome contacts regulate mitochondrial fission via RAB7 GTP hydrolysis. Nature 554:382-386
Ladomersky, Erik; Zhai, Lijie; Lenzen, Alicia et al. (2018) IDO1 Inhibition Synergizes with Radiation and PD-1 Blockade to Durably Increase Survival Against Advanced Glioblastoma. Clin Cancer Res 24:2559-2573

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