This application for renewal of the Cardiovascular T32 training program at the University of Hawaii draws on the strengths of our Center for Cardiovascular Research (CCR) and our established graduate program in Cell and Molecular Biology. We also have maintained and enhanced an alliance with the Cardiovascular Division at Stanford University Medical School to enrich the local academic environment and increase the number of seasoned senior investigators available as mentors for our trainees. In recent years our medical school has embarked on a new direction, emphasizing basic investigation that has instilled new energy into our graduate programs. We have moved into a modern campus on the shore of Honolulu and attracted nationally competitive investigators. Our Cardiovascular Center has recruited or developed 5 independent investigators who have a principal focus on cardiovascular investigation. In addition we have a group of UH faculty with established research programs pertinent to cardiovascular science. We now have the critical mass of investigators needed for a successful T32 program. During our first cycle as the only T32 program at the University of Hawaii we have had success in training under-represented minority scientists and in helping our trainees to obtain independent grant funding. We still have our roots in our minority-serving, clinically-focused school, but are adding an important level of scientific sophistication to serve our special location and multiethnic population. During the second cycle of funding, described in this application, we will continue to place our best graduate students and postdoctoral fellows in laboratories devoted to cardiovascular projects, and provide mentoring that will help them succeed. They will benefit from an established curriculum, CCR core resources, and will also be able to draw upon the Stanford Cardiovascular Division for world-class expertise and research resources. We request support for three graduate students and three postdoctoral fellows per year. We expect, on average, that the graduate students will be supported for no more than three years and the postdocs for no more than two years before they either finish or obtain independent funding. Thus we anticipate supporting approximately 7 individual postdoctoral fellows and 5 graduate students during the 5 years of this program. Our goal is to train our next generation of cardiovascular investigators, with special attention to the priorities of our local population.

Public Health Relevance

This application is for renewal of a training program that will provide support for predoctoral and postdoctoral trainees performing cardiovascular research at the John A. Burns School of Medicine at the University of Hawaii. !

Agency
National Institute of Health (NIH)
Institute
National Heart, Lung, and Blood Institute (NHLBI)
Type
Institutional National Research Service Award (T32)
Project #
5T32HL115505-07
Application #
9628003
Study Section
Special Emphasis Panel (ZHL1)
Program Officer
Wang, Wayne C
Project Start
2012-09-01
Project End
2023-08-31
Budget Start
2019-09-01
Budget End
2020-08-31
Support Year
7
Fiscal Year
2019
Total Cost
Indirect Cost
Name
University of Hawaii
Department
Internal Medicine/Medicine
Type
Schools of Medicine
DUNS #
965088057
City
Honolulu
State
HI
Country
United States
Zip Code
96822
Ivey, Malina J; Kuwabara, Jill T; Pai, Jonathan T et al. (2018) Resident fibroblast expansion during cardiac growth and remodeling. J Mol Cell Cardiol 114:161-174
Peterman, Karen; Withy, Kelley; Boulay, Rachel (2018) Validating Common Measures of Self-Efficacy and Career Attitudes within Informal Health Education for Middle and High School Students. CBE Life Sci Educ 17:ar26
Suhara, Tomohiro; Baba, Yuichi; Shimada, Briana K et al. (2017) The mTOR Signaling Pathway in Myocardial Dysfunction in Type 2 Diabetes Mellitus. Curr Diab Rep 17:38
Lum, Corey J; Nakagawa, Kazuma; Shohet, Ralph V et al. (2017) The Cost-Benefit Balance of Statins in Hawai'i: A Moving Target. Hawaii J Med Public Health 76:99-102
Kuwabara, Jill T; Tallquist, Michelle D (2017) Tracking Adventitial Fibroblast Contribution to Disease: A Review of Current Methods to Identify Resident Fibroblasts. Arterioscler Thromb Vasc Biol 37:1598-1607
Pinto, Alexander R; Ilinykh, Alexei; Ivey, Malina J et al. (2016) Revisiting Cardiac Cellular Composition. Circ Res 118:400-9
Swonger, Jessica M; Liu, Jocelyn S; Ivey, Malina J et al. (2016) Genetic tools for identifying and manipulating fibroblasts in the mouse. Differentiation 92:66-83
Walsh, Kathryn R; Kuwabara, Jill T; Shim, Joon W et al. (2016) Norepinephrine-evoked salt-sensitive hypertension requires impaired renal sodium chloride cotransporter activity in Sprague-Dawley rats. Am J Physiol Regul Integr Comp Physiol 310:R115-24
Carmichael, C Y; Carmichael, A C T; Kuwabara, J T et al. (2016) Impaired sodium-evoked paraventricular nucleus neuronal activation and blood pressure regulation in conscious Sprague-Dawley rats lacking central G?i2 proteins. Acta Physiol (Oxf) 216:314-29
Aoyagi, Toshinori; Higa, Jason K; Aoyagi, Hiroko et al. (2015) Cardiac mTOR rescues the detrimental effects of diet-induced obesity in the heart after ischemia-reperfusion. Am J Physiol Heart Circ Physiol 308:H1530-9

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