The expanded Core moved in 2008 from Harborview Medical Center to the SLU campus. Services include: Energy Balance: Advantages of our new Sable System include that it can be used for either mice or rats, generates 4x more data per unit time, and reduces animal stress by employing cages that contain bedding (unlike other calorimeter systems) and thus more closely resemble the animal's home cage. This equipment has also overcome previous obstacles related to food intake measurement and has several additional advantages over other systems (e.g., pair-feeding capability, measurement of food preferences and the ability to conduct metabolic studies in a wide range of temperature environments). Metabolic Imaging Subcore: The overall goal is to assist NORC Als in harnessing advanced technologies that allow for in vivo assessment of metabolic phenotypes and endpoints in both animal and human models by capitalizing on existing state-of-the-art facilities, equipment, and expertise. Although some of these imaging services can be obtained directly via the UW Department of Radiology, our Subcore markedly increases accessibility to while reducing costs to NORC Als for these services. Moreover, many imaging protocols described below were developed and validated by Subcore faculty specifically to meet the needs of NORC Als, and would not otherwise be available. Services components include consultative services for optimization of existing or new protocols, training, and ongoing technological support, effectively facilitating access for NORC Als to contact experts and supporting their ability to acquire and/or analyze imaging data on a fee-for-service basis. These goals are met by taking advantage of the substantial investment in sophisticated equipment and maintenance that exists within UW imaging facilities, under the direction of the UW Department of Radiology. Routine access to these services is limited by the need to independently generate and provide complete image acquisition protocols (which requires significant technological expertise, especially for MRI) and by the fact that once images are acquired, users are also responsible for image processing to measure their qualitative or quantitative radiologic outcomes. Moreover, existing facilities do not provide for animal handling, human subject safety screening, or administration of stimuli during fMRI. Lastly, we are pleased to offer funds to enable new imaging projects to be piloted at no charge to the investigator. By providing these services as well as consultation to Als, the Metabolic Imaging Subcore facilitates access to and use of available advanced imaging technologies.

Agency
National Institute of Health (NIH)
Institute
National Institute of Diabetes and Digestive and Kidney Diseases (NIDDK)
Type
Center Core Grants (P30)
Project #
5P30DK035816-28
Application #
8686821
Study Section
Special Emphasis Panel (ZDK1)
Project Start
Project End
Budget Start
2014-07-01
Budget End
2015-06-30
Support Year
28
Fiscal Year
2014
Total Cost
Indirect Cost
Name
University of Washington
Department
Type
DUNS #
City
Seattle
State
WA
Country
United States
Zip Code
98195
Anderson, Lindsey J; Tamayose, Jamie M; Garcia, Jose M (2018) Use of growth hormone, IGF-I, and insulin for anabolic purpose: Pharmacological basis, methods of detection, and adverse effects. Mol Cell Endocrinol 464:65-74
Han, Seung Jin; Boyko, Edward J; Kim, Soo Kyung et al. (2018) Association of Thigh Muscle Mass with Insulin Resistance and Incident Type 2 Diabetes Mellitus in Japanese Americans. Diabetes Metab J 42:488-495
Wander, Pandora L; Hayashi, Tomoshige; Sato, Kyoko Kogawa et al. (2018) Design and validation of a novel estimator of visceral adipose tissue area and comparison to existing adiposity surrogates. J Diabetes Complications 32:1062-1067
Bornfeldt, Karin E; Kramer, Farah; Batorsky, Anna et al. (2018) A Novel Type 2 Diabetes Mouse Model of Combined Diabetic Kidney Disease and Atherosclerosis. Am J Pathol 188:343-352
Haenisch, Michael; Treuting, Piper M; Brabb, Thea et al. (2018) Pharmacological inhibition of ALDH1A enzymes suppresses weight gain in a mouse model of diet-induced obesity. Obes Res Clin Pract 12:93-101
Bentsen, Marie Aare; Mirzadeh, Zaman; Schwartz, Michael W (2018) Revisiting How the Brain Senses Glucose-And Why. Cell Metab :
Faber, Chelsea L; Matsen, Miles E; Velasco, Kevin R et al. (2018) Distinct Neuronal Projections From the Hypothalamic Ventromedial Nucleus Mediate Glycemic and Behavioral Effects. Diabetes 67:2518-2529
Goh, Charlene E; Mooney, Stephen J; Siscovick, David S et al. (2018) Medical facilities in the neighborhood and incidence of sudden cardiac arrest. Resuscitation 130:118-123
Subramanian, Savitha; Goodspeed, Leela; Wang, Shari et al. (2018) Deficiency of Invariant Natural Killer T Cells Does Not Protect Against Obesity but Exacerbates Atherosclerosis in Ldlr-/- Mice. Int J Mol Sci 19:
Mooney, Stephen J; Lemaitre, Rozenn N; Siscovick, David S et al. (2018) Neighborhood food environment, dietary fatty acid biomarkers, and cardiac arrest risk. Health Place 53:128-134

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