The Monoclonal Antibody Facility provides Cancer Center and Northwestern University investigators access to the technology for the efficient creation of hybridoma cell lines and the production of monoclonal antibodies from these cell lines. These services include immunization of animals, somatic cell fusions, cloning and screening of hybridomas, subcloning and establishment of antibody producing cell lines, and production of active antibodies from hybridoma lines. In addition to providing these services, the facility provides consultation and training for NU investigators interested in establishing any of these activities in their own research laboratory or using monoclonal antibodies in their research. Surveys of researchers have led to projections that 91% of the usage of the facility will be in support of Cancer Center Members with peerreviewed funding. During the last grant period the facility has focused on providing its core services with higher efficiency and higher success rates, while increasing the user base. There are few examples of monoclonal antibodies relevant to cancer research that were generated by the facility during last grant period: 1. mAbs that recognize gp42. gp42 binds HLA Class II and is essential for EBV entry of B lymphocytes. These mAbs have been critical reagents in the characterization of gp42 domains essential for function. The mAbs are also being used is crystallography studies of gp42. 2. mAbs that recognize EIPR (E6-interacting p53 regulator), which is novel p53 interacting protein. This mAb is essential for ongoing study of novel E6 targets in epithelial cell biology and oncogenesis 3. mAbs directed towards a- methylacyl-CoA racemase (AMACR), which is highly expressed in prostate adenocarcinoma but not in benign prostate tissue 4. mAbs against angiopoietin-like 4 gene product (ANGPTL4 protein) that displays angiogenic activity. It was shown that ANGPTL4 is produced only in conventional renal carcinoma cells (conventional RCCs), and not in other benign or malignant renal legions, that makes it possible to use ANGPTL4 protein as a diagnostic marker for conventional RCC 5. mAbs that recognizes MAGE-D1, which is downregulated in subset of breast cancer cell lines. MAGE-D1 is likely a downstream target of BRCA2 and is required for BRCA2 mediated growth suppression. 6. mAbs recognizing Centrobin, which is also a BRCA2 binding protein. Centrobin is novel daughter centriole protein that is required for the centriole duplication. The anti-Centrobin monoclonal is currently being used to study the interaction BRCA2 and Centrobin and their functions.

Agency
National Institute of Health (NIH)
Institute
National Cancer Institute (NCI)
Type
Center Core Grants (P30)
Project #
5P30CA060553-17
Application #
8135588
Study Section
Subcommittee G - Education (NCI)
Project Start
Project End
Budget Start
2010-08-01
Budget End
2011-07-31
Support Year
17
Fiscal Year
2010
Total Cost
$108,715
Indirect Cost
Name
Northwestern University at Chicago
Department
Type
DUNS #
005436803
City
Chicago
State
IL
Country
United States
Zip Code
60611
Mandelin 2nd, Arthur M; Homan, Philip J; Shaffer, Alexander M et al. (2018) Transcriptional Profiling of Synovial Macrophages Using Minimally Invasive Ultrasound-Guided Synovial Biopsies in Rheumatoid Arthritis. Arthritis Rheumatol 70:841-854
Fong, Lam-Kiu; Wang, Ziwei; Schatz, George C et al. (2018) The Role of Structural Enthalpy in Spherical Nucleic Acid Hybridization. J Am Chem Soc 140:6226-6230
Suraneni, Praveen K; Corey, Seth J; Hession, Michael J et al. (2018) Dynamins 2 and 3 control the migration of human megakaryocytes by regulating CXCR4 surface expression and ITGB1 activity. Blood Adv 2:3540-3552
Yan, M; Lewis, P L; Shah, R N (2018) Tailoring nanostructure and bioactivity of 3D-printable hydrogels with self-assemble peptides amphiphile (PA) for promoting bile duct formation. Biofabrication 10:035010
Edelbrock, Alexandra N; Àlvarez, Zaida; Simkin, Dina et al. (2018) Supramolecular Nanostructure Activates TrkB Receptor Signaling of Neuronal Cells by Mimicking Brain-Derived Neurotrophic Factor. Nano Lett 18:6237-6247
Fisher, Daniel W; Han, Ye; Lyman, Kyle A et al. (2018) HCN channels in the hippocampus regulate active coping behavior. J Neurochem 146:753-766
Sullivan, David P; Bui, Triet; Muller, William A et al. (2018) In vivo imaging reveals unique neutrophil transendothelial migration patterns in inflamed intestines. Mucosal Immunol 11:1571-1581
Russi, Abigail E; Ebel, Mark E; Yang, Yuchen et al. (2018) Male-specific IL-33 expression regulates sex-dimorphic EAE susceptibility. Proc Natl Acad Sci U S A 115:E1520-E1529
Frankowski, Kevin J; Wang, Chen; Patnaik, Samarjit et al. (2018) Metarrestin, a perinucleolar compartment inhibitor, effectively suppresses metastasis. Sci Transl Med 10:
Melo-Cardenas, Johanna; Xu, Yuanming; Wei, Juncheng et al. (2018) USP22 deficiency leads to myeloid leukemia upon oncogenic Kras activation through a PU.1-dependent mechanism. Blood 132:423-434

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