This proposal aims to improve the translational and community-based HPV-associated cancer research, education, and training at Howard University through collaborative projects and an effective long-term partnership with Johns Hopkins Medical Institutions Sidney Kimmel Comprehensive Cancer Center. Human papillomavirus (HPV) accounts for 5.2% of cancer cases worldwide. Several strains of HPV cause a variety of devastating reproductive and oropharyngeal cancers. In the United States, about 26,700 cases of HPV-associated cancers are diagnosed annually. African American women suffer from a significantly higher incidence rate of HPV-associated cervical, vaginal, and anal cancers compared to their Caucasian counterparts. Additionally, HPV-16 has been identified in approximately 20-30% of head and neck cancers and roughly 56% of oropharynx and oral cavity cancers. Howard University Medical Institutions have a historically Black student body, and its medical and dental facilities participate in direct service to minority populations. However, Howard University faces significant challenges in cancer research and health disparities efforts. Johns Hopkins is committed to providing mentorship and educational resources in cancer research to improve Howard's capacities. Howard is a leading minority-serving institution, while Johns Hopkins is a well-established NCI-designated Cancer Center. An educational effort that brings together Howard doctors and dentists who focus on minorities and Johns Hopkins researchers who study HPV-related cancers will help to address socioeconomic disparities and barriers to cancer health, health education, and health-related professions. Through a set of collaborative pilot projects that include HPV vaccine development in mice models, epidemiology research in a Washington D.C. community cohort, and an extensive mentoring network between the two universities, this collaboration will significantly enhance career development, education, and competitiveness in seeking funding opportunities for Howard students and educators.
Specific aims will be: 1) to support collaborative cancer research projects between the Howard University Medical Institutions and the Sidney Kimmel Cancer Center at Johns Hopkins; 2) to provide collaborative training and mentoring programs for promoting Howard medical and dental students and faculty in cancer research, 3) to establish education programs that advance the knowledge of cancer research as it applies to etiology, prevention, diagnosis, and treatment of HPV-associated cancer in the context of minority-serving institutions.

Public Health Relevance

Howard University/Johns Hopkins Partnership in HPV-Related Cancer Research. This effective, long-term partnership with Johns Hopkins Medical Institutions Sidney Kimmel Comprehensive Cancer Center features collaborative pilot projects such as HPV vaccine development, epidemiology research in a community cohort, and an extensive mentoring network to improve the translational and community-based cancer health research capabilities of Howard University. Data from the projects will contribute to publications and competitive grant applications for Howard University scientists, and the overall collaboration will help to address socioeconomic disparities and barriers to cancer health, health education, and health-related professions in the Washington D.C./Baltimore metropolitan area.

Agency
National Institute of Health (NIH)
Institute
National Cancer Institute (NCI)
Type
Exploratory Grants (P20)
Project #
5P20CA192988-04
Application #
9330697
Study Section
Special Emphasis Panel (ZCA1)
Program Officer
Mcneil Ford, Nicole
Project Start
2014-09-20
Project End
2018-08-31
Budget Start
2017-09-01
Budget End
2018-08-31
Support Year
4
Fiscal Year
2017
Total Cost
Indirect Cost
Name
Johns Hopkins University
Department
Pathology
Type
Schools of Medicine
DUNS #
001910777
City
Baltimore
State
MD
Country
United States
Zip Code
21205
Yang, Andrew; Peng, Shiwen; Farmer, Emily et al. (2017) Enhancing antitumor immunogenicity of HPV16-E7 DNA vaccine by fusing DNA encoding E7-antigenic peptide to DNA encoding capsid protein L1 of Bovine papillomavirus. Cell Biosci 7:46
Peng, Shiwen; Qiu, Jin; Yang, Andrew et al. (2016) Optimization of heterologous DNA-prime, protein boost regimens and site of vaccination to enhance therapeutic immunity against human papillomavirus-associated disease. Cell Biosci 6:16
Sun, Y; Peng, S; Qiu, J et al. (2015) Intravaginal HPV DNA vaccination with electroporation induces local CD8+ T-cell immune responses and antitumor effects against cervicovaginal tumors. Gene Ther 22:528-35
Hararah, Mohammad Khalid; Pollack, Craig Evan; Garza, Mary A et al. (2015) The Relationship Between Education and Prostate-Specific Antigen Testing Among Urban African American Medicare Beneficiaries. J Racial Ethn Health Disparities 2:176-83
Lee, Sung-Jong; Song, Liwen; Yang, Ming-Chieh et al. (2015) Local administration of granulocyte macrophage colony-stimulating factor induces local accumulation of dendritic cells and antigen-specific CD8+ T cells and enhances dendritic cell cross-presentation. Vaccine 33:1549-55
Yang, Benjamin; Yang, Andrew; Peng, Shiwen et al. (2015) Co-administration with DNA encoding papillomavirus capsid proteins enhances the antitumor effects generated by therapeutic HPV DNA vaccination. Cell Biosci 5:35
Lee, Young-Ho; Bae, Hyun Cheol; Noh, Kyung Hee et al. (2015) Gain of HIF-1? under normoxia in cancer mediates immune adaptation through the AKT/ERK and VEGFA axes. Clin Cancer Res 21:1438-46