The Cancer Therapeutics Program has been continuously approved by the NCI CCSG since 1993. The Program seeks to improve patient outcomes through the rapid development of novel research ideas which are translatable to the clinical arena and ideally can be individualized to disease and patient-specific settings. The Programmatic goals are as follows: 1) Bring forward novel preclinical breakthroughs from the bench to the bedside and bring relevant cancer therapeutics from the clinic to the lab in order to enhance the mechanistic understanding of cancer therapeutics; 2) Take new drugs from first-in-human Phase I trials to disease-specific clinical trials that will have a significant impact on establishing new standards of care; and 3) Develop pharmacodynamic and predictive markers to select the best drugs for the patients most likely to respond. These goals are applied across four research themes: targeted therapies, combinations to overcome resistance, immunotherapy, and predictive and pharmacodynamic biomarkers. This Program, which was rated as ?Excellent? at the time of the prior CCSG renewal application, is led by Program Co-Leaders Drs. Ravi Amaravadi and Naomi Haas, who were jointly appointed in September 2013. They succeed Drs. Peter O'Dwyer and Corey Langer, who were asked to become leaders of new cross-Programmatic translational research Initiatives in pancreatic and lung cancer, respectively. The new Co-Leaders were chosen because they have complementary skill sets that match the future directions of the Program. Dr. Amaravadi has expertise in the preclinical-to-translational space, and Dr. Haas has expertise in taking Phase I studies into disease-specific studies and developing multi-institution clinical trials. Drs. Amaravadi and Haas are NCI- funded researchers who bring their scientific vision, innovativeness and energy to this Program, which includes an emphasis on basic and translational research. The 25 Program members represent 10 departments in the Perelman School of Medicine. During the current project period, translational research has continued to be a major focus. Members currently have $6.7M in annual research grant funding (direct costs), of which $3.6M is peer-reviewed and $2.4M is NCI-funded. There have been a total of 361 cancer-related publications authored by Program members during the project period. Of these, 12% are intra-Programmatic, 39% are inter- Programmatic and 57% are multi-institutional.

Agency
National Institute of Health (NIH)
Institute
National Cancer Institute (NCI)
Type
Center Core Grants (P30)
Project #
2P30CA016520-40
Application #
8998415
Study Section
Subcommittee I - Transistion to Independence (NCI)
Project Start
1997-01-15
Project End
2020-11-30
Budget Start
2015-12-01
Budget End
2016-11-30
Support Year
40
Fiscal Year
2016
Total Cost
Indirect Cost
Name
University of Pennsylvania
Department
Type
DUNS #
042250712
City
Philadelphia
State
PA
Country
United States
Zip Code
19104
Rosenfeld, Aaron M; Meng, Wenzhao; Luning Prak, Eline T et al. (2018) ImmuneDB, a Novel Tool for the Analysis, Storage, and Dissemination of Immune Repertoire Sequencing Data. Front Immunol 9:2107
Lang, Fengchao; Sun, Zhiguo; Pei, Yonggang et al. (2018) Shugoshin 1 is dislocated by KSHV-encoded LANA inducing aneuploidy. PLoS Pathog 14:e1007253
Buljan, Vlado A; Graeber, Manuel B; Holsinger, R M Damian et al. (2018) Calcium-axonemal microtubuli interactions underlie mechanism(s) of primary cilia morphological changes. J Biol Phys 44:53-80
Kushner, Carolyn J; Hwang, Wei-Ting; Wang, Shiyu et al. (2018) Long-term risk of second malignancies in women after breast conservation therapy for ductal carcinoma in situ or early-stage breast cancer. Breast Cancer Res Treat 170:45-53
Chang, Changgee; Kundu, Suprateek; Long, Qi (2018) Scalable Bayesian variable selection for structured high-dimensional data. Biometrics :
Min, Eun Jeong; Safo, Sandra E; Long, Qi (2018) Penalized Co-Inertia Analysis with Applications to -Omics Data. Bioinformatics :
Singh, Rajnish Kumar; Lang, Fengchao; Pei, Yonggang et al. (2018) Metabolic reprogramming of Kaposi's sarcoma associated herpes virus infected B-cells in hypoxia. PLoS Pathog 14:e1007062
Pei, Yonggang; Singh, Rajnish Kumar; Shukla, Sanket Kumar et al. (2018) Epstein-Barr Virus Nuclear Antigen 3C Facilitates Cell Proliferation by Regulating Cyclin D2. J Virol 92:
Nicastri, Michael C; Rebecca, Vito W; Amaravadi, Ravi K et al. (2018) Dimeric quinacrines as chemical tools to identify PPT1, a new regulator of autophagy in cancer cells. Mol Cell Oncol 5:e1395504
Micallef, Ivana N; Stiff, Patrick J; Nademanee, Auayporn P et al. (2018) Plerixafor Plus Granulocyte Colony-Stimulating Factor for Patients with Non-Hodgkin Lymphoma and Multiple Myeloma: Long-Term Follow-Up Report. Biol Blood Marrow Transplant 24:1187-1195

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