Diabetes mellitus affects an estimated 10 million people in the US and is a major cause of blindness, renal failure, and vascular insufficiency leading to amputation. Diabetes is also intimately related to at least two other major health problems - obesity and atherosclerosis - and thus an understanding of both the basic mechanisms involved in this disease and approaches to its treatment have wide spread implications. This application is for a Diabetes and Endocrinology Research Center (DERC), the primary focus of which is the study of the etiology, pathogenesis and treatment of diabetes mellitus and its complications. Because of the multi-system nature of these disorders, the DERC will also provide support for research into a variety of problems, including obesity, other endocrine disorders, hormone synthesis and secretion, membrane protein chemistry, mechanisms of autoimmunity, regulation of cell growth and metabolism, etc. The primary aim of the DERC itself is to provide a stable and stimulating framework on which to conduct these multi-disciplinary studies. This will be accomplished through the three programs of the Center: 1. Core Laboratories: Five core laboratories (some of which contain subcores) will provide the basic support for cellular and molecular biology, clinical research, animal resources, radioligand assays, and administrative services. 2. Pilot and Feasibility Funds: Funds will be provided to support the development of new investigators, allow established investigators to explore new areas outside their basic expertise, and bring investigators with other expertise into the diabetes-endocrinology area. 3. Enrichment Program: An Enrichment Program consisting of seminar speakers, visiting professors and workshops will provide continuing education and stimulation, as well as format for cross-fertilization of our diversified research endeavors. Thus, the DERC will benefit research by providing a mechanism for coordinating, integrating and promoting inter-disciplinary activity among already active individual research groups. In addition, it will help build bridges between the Joslin and related institutions and bring new investigators into this important area of research. Finally, it will provide a mechanism for both stabilizing and building further a very productive environment for diabetes/endocrinology research.

Agency
National Institute of Health (NIH)
Institute
National Institute of Diabetes and Digestive and Kidney Diseases (NIDDK)
Type
Center Core Grants (P30)
Project #
1P30DK036836-01
Application #
3102115
Study Section
(SRC)
Project Start
1986-09-30
Project End
1991-08-31
Budget Start
1986-09-30
Budget End
1987-08-31
Support Year
1
Fiscal Year
1986
Total Cost
Indirect Cost
Name
Joslin Diabetes Center
Department
Type
DUNS #
071723084
City
Boston
State
MA
Country
United States
Zip Code
02215
Mulla, Christopher M; Middelbeek, Roeland J W; Patti, Mary-Elizabeth (2018) Mechanisms of weight loss and improved metabolism following bariatric surgery. Ann N Y Acad Sci 1411:53-64
Skupien, Jan; Smiles, Adam M; Valo, Erkka et al. (2018) Variations in Risk of End-Stage Renal Disease and Risk of Mortality in an International Study of Patients With Type 1 Diabetes and Advanced Nephropathy. Diabetes Care :
Laffel, L (2018) Lost in transition: finding a path forward for young adults with Type 1 diabetes. Diabet Med 35:1061-1062
Rao, Tata Nageswara; Gupta, Manoj K; Softic, Samir et al. (2018) Attenuation of PKC? enhances metabolic activity and promotes expansion of blood progenitors. EMBO J 37:
Bauman, Viviana; Sturkey, Adaya C; Sherafat-Kazemzadeh, Rosa et al. (2018) Factitious hypoglycemia in children and adolescents with diabetes. Pediatr Diabetes 19:823-831
Stanford, Kristin I; Rasmussen, Morten; Baer, Lisa A et al. (2018) Paternal Exercise Improves Glucose Metabolism in Adult Offspring. Diabetes 67:2530-2540
Park, Kyoungmin; Li, Qian; Evcimen, Net Da? et al. (2018) Exogenous Insulin Infusion Can Decrease Atherosclerosis in Diabetic Rodents by Improving Lipids, Inflammation, and Endothelial Function. Arterioscler Thromb Vasc Biol 38:92-101
Lynes, Matthew D; Shamsi, Farnaz; Sustarsic, Elahu Gosney et al. (2018) Cold-Activated Lipid Dynamics in Adipose Tissue Highlights a Role for Cardiolipin in Thermogenic Metabolism. Cell Rep 24:781-790
Schuster, Cornelia; Jonas, Franziska; Zhao, Fangzhu et al. (2018) Peripherally induced regulatory T cells contribute to the control of autoimmune diabetes in the NOD mouse model. Eur J Immunol 48:1211-1216
Laguna Sanz, Alejandro J; Mulla, Christopher M; Fowler, Kristen M et al. (2018) Design and Clinical Evaluation of a Novel Low-Glucose Prediction Algorithm with Mini-Dose Stable Glucagon Delivery in Post-Bariatric Hypoglycemia. Diabetes Technol Ther 20:127-139

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