Cancer Immunotherapeutics Program ABSTRACT The mission of the Cancer Immunotherapeutics (CI) Program is to develop novel immunotherapy interventions that harness patients? immune responses for more specific and less toxic cancer therapies, and translate them into clinical practice. To achieve this goal, the Program has three themes: 1) Develop approaches to enhance efficacy of adoptive T cell therapy and cancer vaccines; 2) Modulate the tumor microenvironment to enhance immunotherapy; and 3) Develop novel antibody therapies and imaging modalities. Within each of these themes, research is ongoing to reduce health disparities within our catchment area. Led by Peter Lee, MD and Hua Yu, PhD, the CI Program spans basic, translational, and clinical research. To translate discoveries into therapies, the CI Program receives support from the City of Hope Comprehensive Cancer Center (COHCCC) through the GMP Manufacturing Core, consisting of three cGMP manufacturing facilities that can produce clinical grade antibody-based therapeutics and small molecule drugs. Targeted recruits with national prominence have added both depth and breadth to the program and include Drs. Mingye Feng, Edwin Manuel, Kim Margolin, Laleh Melstrom, Javier Ogembo, Susanne Warner, Yanghee Woo, and Weiping Zou. The major areas of research focus in the CI Program are strengthened by extensive collaborations with other investigators at COHCCC as well as collaborations with investigators at other academic institutions and industry. Sponsored activities include monthly research meetings, monthly seminars, an annual retreat, and annual pilot funding. Membership: 21 Program Members representing 7 basic and clinical departments Publications: 176 total. 18.2% intra-programmatic; 64.8% inter-programmatic; 35.8% inter-institutional Funding: $4,177,832 peer-reviewed; $2,134,027 of which is NCI funding

Agency
National Institute of Health (NIH)
Institute
National Cancer Institute (NCI)
Type
Center Core Grants (P30)
Project #
5P30CA033572-36
Application #
9688955
Study Section
Subcommittee I - Transistion to Independence (NCI)
Project Start
Project End
Budget Start
2019-12-01
Budget End
2020-11-30
Support Year
36
Fiscal Year
2019
Total Cost
Indirect Cost
Name
Beckman Research Institute/City of Hope
Department
Type
DUNS #
027176833
City
Duarte
State
CA
Country
United States
Zip Code
91010
Salgia, Ravi; Kulkarni, Prakash; Gill, Prakash S (2018) EphB4: A promising target for upper aerodigestive malignancies. Biochim Biophys Acta Rev Cancer 1869:128-137
Choi, Audrey H; O'Leary, Michael P; Lu, Jianming et al. (2018) Endogenous Akt Activity Promotes Virus Entry and Predicts Efficacy of Novel Chimeric Orthopoxvirus in Triple-Negative Breast Cancer. Mol Ther Oncolytics 9:22-29
Kumar, B; Garcia, M; Weng, L et al. (2018) Acute myeloid leukemia transforms the bone marrow niche into a leukemia-permissive microenvironment through exosome secretion. Leukemia 32:575-587
Zhou, Jiehua; Lazar, Daniel; Li, Haitang et al. (2018) Receptor-targeted aptamer-siRNA conjugate-directed transcriptional regulation of HIV-1. Theranostics 8:1575-1590
Ding, Yuan Chun; Adamson, Aaron W; Steele, Linda et al. (2018) Discovery of mutations in homologous recombination genes in African-American women with breast cancer. Fam Cancer 17:187-195
Kurata, Jessica S; Lin, Ren-Jang (2018) MicroRNA-focused CRISPR-Cas9 library screen reveals fitness-associated miRNAs. RNA 24:966-981
Hardwick, Nicola R; Frankel, Paul; Ruel, Christopher et al. (2018) p53-Reactive T Cells Are Associated with Clinical Benefit in Patients with Platinum-Resistant Epithelial Ovarian Cancer After Treatment with a p53 Vaccine and Gemcitabine Chemotherapy. Clin Cancer Res 24:1315-1325
Dietze, Eric C; Chavez, Tanya A; Seewaldt, Victoria L (2018) Obesity and Triple-Negative Breast Cancer: Disparities, Controversies, and Biology. Am J Pathol 188:280-290
Kingsmore, Kathryn M; Vaccari, Andrea; Abler, Daniel et al. (2018) MRI analysis to map interstitial flow in the brain tumor microenvironment. APL Bioeng 2:
Wang, Sophia S; Carrington, Mary; Berndt, Sonja I et al. (2018) HLA Class I and II Diversity Contributes to the Etiologic Heterogeneity of Non-Hodgkin Lymphoma Subtypes. Cancer Res 78:4086-4096

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