- Overall The John A. Burns School of Medicine (JABSOM) at the University of Hawaii (UH) proposes to develop a multidisciplinary Hawaii-based Center of Biomedical Research Excellence (COBRE) in Diabetes Mellitus (DM). This Center will initially span departmental and eventually campus borders to promote the metabolic health of the people of Hawaii and the Pacific region. The Center will leverage Hawaii?s ability to link basic science mechanisms underlying diabetes through translational research. The overall goals are to: 1) Mentor junior investigators studying DM and insulin resistance (IR), 2) Establish a Mentoring Team, 3) Develop a Resource Core that will facilitate DM and IR research, 4) Develop future investigators using a Pilot Project Program, and 5) Recruit an Associate/Full Professor with expertise in translational DM research. The global prevalence of DM continues to increase in parallel with the expanding presence of obesity and overweight adults and children. In the US, the prevalence of DM now affects 27.9 million children and adults (8.9% of US population) (www.diabetes.org/diabetes-basics/statistics/). Among racial and ethnic minorities, DM prevalence exceeds that of the US general population by as much as 3-fold. We have shown that among Native Hawaiians (NHs), the prevalence of DM is 22.4% with an additional 15% diagnosed with impaired glucose tolerance or pre-diabetic status. Indeed, prior epidemiological studies on DM, IR, metabolic syndrome (MetS), and heart disease risk factors among NHs and other high risk ethnic populations in Hawaii have provided a rich environment to develop this new COBRE dedicated to understanding the molecular biology underpinnings of DM, IR and the MetS. COBRE funding will be leveraged with institutional funds to accelerate the development of research excellence in DM and IR. The research focus of the Center spans the translational spectrum with one clinical study in Native Hawaiians and Pacific Islanders focused on diabetes and immunoepigenetics. While animal and cell models are being employed in three of the four studies aimed at cation channels, glucose transport in skeletal myocytes and adipocytes, and vascular calcification and dyslipidemia in diabetes and chronic kidney deficiency within the context of IR and DM. New resources being supplemented in this proposal include funding support for a Resources Core with Epigenetics, Animal Metabolic Phenotyping and Cellular Metabolism. Pilot projects are also proposed to fund 2-3 new investigators as the initial cohort of junior investigators progress towards research independence. The JABSOM leadership will also recruit an Associate/Full Professor whose research complements and focuses on translational DM and IR.

Public Health Relevance

? Overall This grant will be used to support a Center of Biomedical Research Excellence that focuses on Diabetes Mellitus (DM) and Insulin Resistance. In the US, the prevalence of diabetes now affects 29.1 million people of all ages or 9.3% of the US population (http://www.cdc.gov/diabetes/pubs/statsreport14/national-diabetes- report-web.pdf). It is well known that the prevalence of DM disproportionately affects more racial and ethnic minorities such as Native Hawaiians, Pacific Islanders, and Asians among others.

Agency
National Institute of Health (NIH)
Institute
National Institute of General Medical Sciences (NIGMS)
Type
Exploratory Grants (P20)
Project #
5P20GM113134-04
Application #
10013264
Study Section
Special Emphasis Panel (ZGM1)
Program Officer
Caldwell, Sheila
Project Start
2017-08-01
Project End
2022-07-31
Budget Start
2020-08-01
Budget End
2021-07-31
Support Year
4
Fiscal Year
2020
Total Cost
Indirect Cost
Name
University of Hawaii
Department
Anatomy/Cell Biology
Type
Schools of Medicine
DUNS #
965088057
City
Honolulu
State
HI
Country
United States
Zip Code
96822
Alfulaij, Naghum; Meiners, Franziska; Michalek, Justin et al. (2018) Cannabinoids, the Heart of the Matter. J Am Heart Assoc 7:
Berry, Marla; Chen, John; Hixon, Alan et al. (2018) Medical School Hotline: School of Medicine Departments - Year in Review 2017, Part 1. Hawaii J Med Public Health 77:14-16
Baba, Yuichi; Higa, Jason K; Shimada, Briana K et al. (2018) Protective effects of the mechanistic target of rapamycin against excess iron and ferroptosis in cardiomyocytes. Am J Physiol Heart Circ Physiol 314:H659-H668
Soya, Mariko; Matsui, Takashi; Shima, Takeru et al. (2018) Hyper-hippocampal glycogen induced by glycogen loading with exhaustive exercise. Sci Rep 8:1285
Bratincsak, Andras; Limm-Chan, Blair N; Nerurkar, Vivek R et al. (2018) Study design and rationale to assess Doxycycline Efficacy in preventing coronary Artery Lesions in children with Kawasaki disease (DEAL trial) - A phase II clinical trial. Contemp Clin Trials 65:33-38
Pitts, Matthew W; Hoffmann, Peter R (2018) Endoplasmic reticulum-resident selenoproteins as regulators of calcium signaling and homeostasis. Cell Calcium 70:76-86
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
Bauer, Carolin; le Saux, Olivier; Pomozi, Viola et al. (2018) Etidronate prevents dystrophic cardiac calcification by inhibiting macrophage aggregation. Sci Rep 8:5812
Lee, Ryan W Y; Corley, Michael J; Pang, Alina et al. (2018) A modified ketogenic gluten-free diet with MCT improves behavior in children with autism spectrum disorder. Physiol Behav 188:205-211
Kauffenstein, Gilles; Yegutkin, Gennady G; Khiati, Salim et al. (2018) Alteration of Extracellular Nucleotide Metabolism in Pseudoxanthoma Elasticum. J Invest Dermatol 138:1862-1870

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