N5.1. Education and Training. Research &Education Tlieme. The CCNE-T will integrate research with education and training both internally and through a variety of partnership activities. The overarching research and education theme of the CCNE-T is the linking of ex vivo diagnostics with in vivo diagnostics, through nanotechnology, to improve monitoring of response to cancer therapy and cancer earlier detection thereby impacting future cancer patient management'The nanotechnology developed in this theme can significantly advance both ex vivo diagnostics through proteomic/genomic/cellomic nanosensors, and in vivo diagnostics through nanoparticles for molecular imaging.

Agency
National Institute of Health (NIH)
Institute
National Cancer Institute (NCI)
Type
Specialized Center--Cooperative Agreements (U54)
Project #
5U54CA151459-05
Application #
8726322
Study Section
Special Emphasis Panel (ZCA1-GRB-S)
Project Start
Project End
Budget Start
2014-08-01
Budget End
2015-07-31
Support Year
5
Fiscal Year
2014
Total Cost
$46,693
Indirect Cost
Name
Stanford University
Department
Type
DUNS #
009214214
City
Stanford
State
CA
Country
United States
Zip Code
94305
Vermesh, Ophir; Aalipour, Amin; Ge, T Jessie et al. (2018) An intravascular magnetic wire for the high-throughput retrieval of circulating tumour cells in vivo. Nat Biomed Eng 2:696-705
Li, Jingchao; Rao, Jianghong; Pu, Kanyi (2018) Recent progress on semiconducting polymer nanoparticles for molecular imaging and cancer phototherapy. Biomaterials 155:217-235
Pohling, Christoph; Campbell, Jos L; Larson, Timothy A et al. (2018) Smart-Dust-Nanorice for Enhancement of Endogenous Raman Signal, Contrast in Photoacoustic Imaging, and T2-Shortening in Magnetic Resonance Imaging. Small 14:e1703683
Shah, Preyas N; Lin, Tiras Y; Aanei, Ioana L et al. (2018) Extravasation of Brownian Spheroidal Nanoparticles through Vascular Pores. Biophys J 115:1103-1115
Song, Guosheng; Chen, Min; Zhang, Yanrong et al. (2018) Janus Iron Oxides @ Semiconducting Polymer Nanoparticle Tracer for Cell Tracking by Magnetic Particle Imaging. Nano Lett 18:182-189
Lee, Jung-Rok; Appelmann, Iris; Miething, Cornelius et al. (2018) Longitudinal Multiplexed Measurement of Quantitative Proteomic Signatures in Mouse Lymphoma Models Using Magneto-Nanosensors. Theranostics 8:1389-1398
Rizzi, Giovanni; Lee, Jung-Rok; Dahl, Christina et al. (2017) Simultaneous Profiling of DNA Mutation and Methylation by Melting Analysis Using Magnetoresistive Biosensor Array. ACS Nano 11:8864-8870
Mohanty, Suchismita; Chen, Zixin; Li, Kai et al. (2017) A Novel Theranostic Strategy for MMP-14-Expressing Glioblastomas Impacts Survival. Mol Cancer Ther 16:1909-1921
Kani, Kian; Garri, Carolina; Tiemann, Katrin et al. (2017) JUN-Mediated Downregulation of EGFR Signaling Is Associated with Resistance to Gefitinib in EGFR-mutant NSCLC Cell Lines. Mol Cancer Ther 16:1645-1657
Lee, Jung-Rok; Chan, Carmel T; Ruderman, Daniel et al. (2017) Longitudinal Monitoring of Antibody Responses against Tumor Cells Using Magneto-nanosensors with a Nanoliter of Blood. Nano Lett 17:6644-6652

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