Five years after its formation, the Clinical and Translational Science Award (CTSA) at the Univeristy of North Carolina at Chapel Hill (UNC), the North Carolina Translational and Clinical Sciences Institute (NC TraCS), has become the integrated, campus-wide home for clinical and translational research at UNC. The overall goal of this U54 Cooperative Agreement application is to combine the research strengths, resources and opportunities at UNC and new partner, RTI International (RTI), to build on the foundation established in the CTSA's last five years. NC TraCS .will work to improve human health by accelerating clinical and translational research from health science discovery to dissemination to patients and communities. NC TraCS will strive to overcome the well-documented barriers to the effective, sustained translation of research discovery along the translational research continuum by improving efficiency, training a research workforce and exporting successful, validated methods developed in NC TraCS to other CTSA institutions and the public. The proposed CTSA will specifically (1) amplify a thriving CTSA program to the point that it supports the full spectrum of clinical and translational research;(2) leverage CTSA resources and institutional strengths to create a critical, sustained focus on three strategic initiatives: (a) next-generation technologies to transform the very nature of clinical research and practice, (b) new paradigms and resources to accelerate drug development, and (c) robust comparative effectiveness research studies to provide definitive evidence of the benefits and harms of tests and treatments;and (3) train, support and incentivize the next generation of clinical and translational science researchers. These goals will be accomplished by three resources, six services, integrated and streamlined from the original 11, and the three strategic initiatives. UNC and RTI now have a unique set of research and training resources to support the full range of clinical and translational research, from basic science to clinical application to policy change. NC TraCS will leverage the opportunity of this CTSA application to garner >$60 million dollars in matching institutional support to extend our capabilities to meet the three aims. In partnership with RTI, NC TraCS will take advantage of the resources it has created and nourished during the past five years to quickly and effectively bring the fruits of research to patients across the state, as well as nationally through the CTSA Consortium.

Public Health Relevance

Researchers, clinicians and health policy experts have long lamented the well-documented lag between basic science discoveries and when those discoveries reach patients to treat them and make their lives better. The proposed UNC-RTI partnership in cooperation with the CTSA Consortium will help to ensure that patients will more quickly and effectively benefit from the results of biomedical research.

Agency
National Institute of Health (NIH)
Institute
National Center for Advancing Translational Sciences (NCATS)
Type
Linked Specialized Center Cooperative Agreement (UL1)
Project #
3UL1TR001111-02S1
Application #
8917646
Study Section
Special Emphasis Panel (ZAI1-PTM-C (S1))
Program Officer
Wilde, David B
Project Start
2013-09-26
Project End
2018-04-30
Budget Start
2014-09-06
Budget End
2015-03-05
Support Year
2
Fiscal Year
2014
Total Cost
$113,442
Indirect Cost
$38,809
Name
University of North Carolina Chapel Hill
Department
Internal Medicine/Medicine
Type
Schools of Medicine
DUNS #
608195277
City
Chapel Hill
State
NC
Country
United States
Zip Code
27599
Shepherd, Sarah D; O'Buckley, Sandra C; Harrington, James M et al. (2018) A moldable sustained release bupivacaine formulation for tailored treatment of postoperative dental pain. Sci Rep 8:12172
Natarajan, Girija; Shankaran, Seetha; Saha, Shampa et al. (2018) Antecedents and Outcomes of Abnormal Cranial Imaging in Moderately Preterm Infants. J Pediatr 195:66-72.e3
Beck, James D; Moss, Kevin L; Morelli, Thiago et al. (2018) Periodontal profile class is associated with prevalent diabetes, coronary heart disease, stroke, and systemic markers of C-reactive protein and interleukin-6. J Periodontol 89:157-165
Gruber, Joann F; Becker-Dreps, Sylvia; Hudgens, Michael G et al. (2018) Timing of Rotavirus Vaccine Doses and Severe Rotavirus Gastroenteritis Among Vaccinated Infants in Low- and Middle-income Countries. Epidemiology 29:867-875
Williams, Grant R; Deal, Allison M; Muss, Hyman B et al. (2018) Frailty and skeletal muscle in older adults with cancer. J Geriatr Oncol 9:68-73
Carthron, Dana L; Phillips, Ashley; Cuthbertson, Carmen C et al. (2018) Four Methods of Recruiting Couples Into a Longitudinal Study of Physical Activity in People With Osteoarthritis: Recruitment, Retention, and Lessons Learned. Front Public Health 6:197
Frerichs, Leah; Young, Tiffany L; Dave, Gaurav et al. (2018) Mind maps and network analysis to evaluate conceptualization of complex issues: A case example evaluating systems science workshops for childhood obesity prevention. Eval Program Plann 68:135-147
Conserve, Donaldson F; Alemu, Dawit; Yamanis, Thespina et al. (2018) ""He Told Me to Check My Health"": A Qualitative Exploration of Social Network Influence on Men's HIV Testing Behavior and HIV Self-Testing Willingness in Tanzania. Am J Mens Health 12:1185-1196
Layton, J Bradley; Butler, Anne M; Panozzo, Catherine A et al. (2018) Rotavirus vaccination and short-term risk of adverse events in US infants. Paediatr Perinat Epidemiol 32:448-457
Fioretto, Paola; Del Prato, Stefano; Buse, John B et al. (2018) Efficacy and safety of dapagliflozin in patients with type 2 diabetes and moderate renal impairment (chronic kidney disease stage 3A): The DERIVE Study. Diabetes Obes Metab 20:2532-2540

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