We seek to establish a Diabetes and Endocrinology Research Center at Columbia University. The DERC will promote interactions among research groups in diabetes, immunology, transplantation and obesity at the Naomi Berrie Diabetes Center, The New York Obesity Research Center, and the historically strong groups in arteriosclerosis/lipid research at Columbia University. We envision that these interactions will extend to groups currently pursuing basic research in structural biology, genomics, complications, cell biology and clinical investigators in the areas of body composition, energy expenditure, genetic epidemiology of type 2 diabetes in adolescents, islet transplantation and prevention of diabetes complications. The DERC will strengthen existing NIH training grants in Endocrinology, Metabolism, Pediatrics, Arterioeclerosis, Immunology, Genetics and Obesity by broadening the pool of mentors and laboratories for the trainees' benefit. To meet these goals, the DERC will provide core services in six areas of research: Hormone/metabolite, Protein expression, Immunology/cell banking, Genomics, Analytical determinations of body composition and tissue metabolites, and Mouse phenotyping. Additionally, the DERC will provide opportunity and encouragement for established scientists in other research areas at Columbia University to enter the diabetes field, and will make available initial funding for young investigators through a pilot/feasibility grant program modeled after the existing Naomi Berrie Fellowship Award. The DERC will broaden the research base through program enrichment activities aimed at increasing the awareness of diabetes research in the scientific/academic community of Columbia University and New York City and through more extensive interactions with other academic institutions in the greater New York area.

Agency
National Institute of Health (NIH)
Institute
National Institute of Diabetes and Digestive and Kidney Diseases (NIDDK)
Type
Center Core Grants (P30)
Project #
1P30DK063608-01
Application #
6577556
Study Section
Special Emphasis Panel (ZDK1-GRB-7 (O1))
Program Officer
Abraham, Kristin M
Project Start
2003-05-01
Project End
2008-01-31
Budget Start
2003-05-01
Budget End
2004-01-31
Support Year
1
Fiscal Year
2003
Total Cost
$1,344,099
Indirect Cost
Name
Columbia University (N.Y.)
Department
Internal Medicine/Medicine
Type
Schools of Medicine
DUNS #
621889815
City
New York
State
NY
Country
United States
Zip Code
10032
Savage, Thomas M; Shonts, Brittany A; Obradovic, Aleksandar et al. (2018) Early expansion of donor-specific Tregs in tolerant kidney transplant recipients. JCI Insight 3:
Molusky, Matthew M; Hsieh, Joanne; Lee, Samuel X et al. (2018) Metformin and AMP Kinase Activation Increase Expression of the Sterol Transporters ABCG5/8 (ATP-Binding Cassette Transporter G5/G8) With Potential Antiatherogenic Consequences. Arterioscler Thromb Vasc Biol 38:1493-1503
Carpenter, D J; Granot, T; Matsuoka, N et al. (2018) Human immunology studies using organ donors: Impact of clinical variations on immune parameters in tissues and circulation. Am J Transplant 18:74-88
Langlet, Fanny; Tarbier, Marcel; Haeusler, Rebecca A et al. (2018) microRNA-205-5p is a modulator of insulin sensitivity that inhibits FOXO function. Mol Metab 17:49-60
Proto, Jonathan D; Doran, Amanda C; Gusarova, Galina et al. (2018) Regulatory T Cells Promote Macrophage Efferocytosis during Inflammation Resolution. Immunity 49:666-677.e6
Carli, Jayne F Martin; LeDuc, Charles A; Zhang, Yiying et al. (2018) The role of Rpgrip1l, a component of the primary cilium, in adipocyte development and function. FASEB J 32:3946-3956
Postigo-Fernandez, Jorge; Creusot, RĂ©mi J (2018) A multi-epitope DNA vaccine enables a broad engagement of diabetogenic T cells for tolerance in Type 1 diabetes. J Autoimmun :
Proto, Jonathan D; Doran, Amanda C; Subramanian, Manikandan et al. (2018) Hypercholesterolemia induces T cell expansion in humanized immune mice. J Clin Invest 128:2370-2375
Martin Carli, Jayne F; LeDuc, Charles A; Zhang, Yiying et al. (2018) FTO mediates cell-autonomous effects on adipogenesis and adipocyte lipid content by regulating gene expression via 6mA DNA modifications. J Lipid Res 59:1446-1460
Arnes, Luis; Liu, Zhaoqi; Wang, Jiguang et al. (2018) Comprehensive characterisation of compartment-specific long non-coding RNAs associated with pancreatic ductal adenocarcinoma. Gut :

Showing the most recent 10 out of 225 publications