Open Access. Powered by Scholars. Published by Universities.®
Endocrinology, Diabetes, and Metabolism Commons™
Open Access. Powered by Scholars. Published by Universities.®
- Discipline
-
- Medical Sciences (167)
- Life Sciences (94)
- Biochemical Phenomena, Metabolism, and Nutrition (82)
- Diseases (74)
- Endocrine System Diseases (64)
-
- Dietetics and Clinical Nutrition (61)
- Nutrition (60)
- Biomedical Informatics (19)
- Bioinformatics (17)
- Neurosciences (15)
- Oncology (15)
- Medical Genetics (14)
- Public Health (14)
- Internal Medicine (13)
- Cardiology (11)
- Medical Cell Biology (10)
- Medical Molecular Biology (10)
- Cardiovascular Diseases (8)
- Genetic Phenomena (7)
- Neurology (6)
- Ophthalmology (6)
- Biology (5)
- Health Services Research (5)
- Microbiology (5)
- Anatomy (4)
- Biochemistry, Biophysics, and Structural Biology (4)
- Biological Phenomena, Cell Phenomena, and Immunity (4)
- Institution
- Publication Year
- Publication
-
- Faculty, Staff and Students Publications (81)
- Children’s Nutrition Research Center Staff Publications (56)
- Faculty, Staff and Student Publications (28)
- Barnstable Brown Diabetes Center Faculty Publications (2)
- Duncan NRI Faculty and Staff Publications (2)
-
- Staff and Researcher Publications (2)
- CAS Publications (1)
- Computer Science Faculty Publications (1)
- Dartmouth Scholarship (1)
- Department of Dermatology and Cutaneous Biology Faculty Papers (1)
- Department of Medicine Faculty Papers (1)
- Department of Physiological Sciences Faculty Publications (1)
- Honors Projects (1)
- Human Movement Studies & Special Education Faculty Publications (1)
- MUSC Theses and Dissertations (1)
- Mahurin Honors College Capstone Experience/Thesis Projects (1)
- Markey Cancer Center Faculty Publications (1)
- Medicine Faculty Publications (1)
- Physiology Faculty Publications (1)
- Saha Cardiovascular Research Center Faculty Publications (1)
- Sanders-Brown Center on Aging Faculty Publications (1)
- The Brown Foundation: Institute of Molecular Medicine (1)
- Publication Type
Articles 181 - 187 of 187
Full-Text Articles in Endocrinology, Diabetes, and Metabolism
Sglt2 Inhibitor Therapy Improves Blood Glucose But Does Not Prevent Diabetic Bone Disease In Diabetic Dba/2j Male Mice, Kathryn M. Thrailkill, R. Clay Bunn, Jeffry S. Nyman, Mallikarjuna R. Rettiganti, Gael E. Cockrell, Elizabeth C. Wahl, Sasidhar Uppuganti, Charles K. Lumpkin, John L. Fowlkes
Sglt2 Inhibitor Therapy Improves Blood Glucose But Does Not Prevent Diabetic Bone Disease In Diabetic Dba/2j Male Mice, Kathryn M. Thrailkill, R. Clay Bunn, Jeffry S. Nyman, Mallikarjuna R. Rettiganti, Gael E. Cockrell, Elizabeth C. Wahl, Sasidhar Uppuganti, Charles K. Lumpkin, John L. Fowlkes
Barnstable Brown Diabetes Center Faculty Publications
Persons with type 1 and type 2 diabetes have increased fracture risk, attributed to deficits in the microarchitecture and strength of diabetic bone, thought to be mediated, in part, by the consequences of chronic hyperglycemia. Therefore, to examine the effects of a glucose-lowering SGLT2 inhibitor on blood glucose (BG) and bone homeostasis in a model of diabetic bone disease, male DBA/2J mice with or without streptozotocin (STZ)-induced hyperglycemia were fed chow containing the SGLT2 inhibitor, canagliflozin (CANA), or chow without drug, for 10 weeks of therapy. Thereafter, serum bone biomarkers were measured, fracture resistance of cortical bone was assessed by …
Genetic Modification Of Human Mesenchymal Stem Cells Helps To Reduce Adiposity And Improve Glucose Tolerance In An Obese Diabetic Mouse Model., Sabyasachi Sen, Cleyton C Domingues, Carol Rouphael, Cyril Chou, Chul Kim, Nagendra Yadava
Genetic Modification Of Human Mesenchymal Stem Cells Helps To Reduce Adiposity And Improve Glucose Tolerance In An Obese Diabetic Mouse Model., Sabyasachi Sen, Cleyton C Domingues, Carol Rouphael, Cyril Chou, Chul Kim, Nagendra Yadava
Medicine Faculty Publications
INTRODUCTION: Human mesenchymal stem cells (MSCs) are multipotent cells that can differentiate into fat, muscle, bone and cartilage cells. Exposure of subcutaneous abdominal adipose tissue derived AD-MSCs to high glucose (HG) leads to superoxide accumulation and up-regulation of inflammatory molecules. Our aim was to inquire how HG exposure affects MSCs differentiation and whether the mechanism is reversible.
METHODS: We exposed human adipose tissue derived MSCs to HG (25 mM) and compared it to normal glucose (NG, 5.5 mM) exposed cells at 7, 10 and 14 days. We examined mitochondrial superoxide accumulation (Mitosox-Red), cellular oxygen consumption rate (OCR, Seahorse) and gene …
Increasing Adipocyte Lipoprotein Lipase Improves Glucose Metabolism In High Fat Diet-Induced Obesity, R. Grace Walton, Beibei Zhu, Resat Unal, Michael Spencer, Manjula Sunkara, Andrew J. Morris, Richard Charnigo, Wendy S. Katz, Alan Daugherty, Deborah A. Howatt, Philip A. Kern, Brian S. Finlin
Increasing Adipocyte Lipoprotein Lipase Improves Glucose Metabolism In High Fat Diet-Induced Obesity, R. Grace Walton, Beibei Zhu, Resat Unal, Michael Spencer, Manjula Sunkara, Andrew J. Morris, Richard Charnigo, Wendy S. Katz, Alan Daugherty, Deborah A. Howatt, Philip A. Kern, Brian S. Finlin
Barnstable Brown Diabetes Center Faculty Publications
Lipid accumulation in liver and skeletal muscle contributes to co-morbidities associated with diabetes and obesity. We made a transgenic mouse in which the adiponectin (Adipoq) promoter drives expression of lipoprotein lipase (LPL) in adipocytes to potentially increase adipose tissue lipid storage. These mice (Adipoq-LPL) have improved glucose and insulin tolerance as well as increased energy expenditure when challenged with a high fat diet (HFD). To identify the mechanism(s) involved, we determined whether the Adipoq-LPL mice diverted dietary lipid to adipose tissue to reduce peripheral lipotoxicity, but we found no evidence for this. Instead, characterization …
Cardiac Fibroblast-Dependent Extracellular Matrix Accumulation Is Associated With Diastolic Stiffness In Type 2 Diabetes., Kirk R. Hutchinson, C. Kevin Lord, T. Aaron West, James A. Stewart
Cardiac Fibroblast-Dependent Extracellular Matrix Accumulation Is Associated With Diastolic Stiffness In Type 2 Diabetes., Kirk R. Hutchinson, C. Kevin Lord, T. Aaron West, James A. Stewart
CAS Publications
Cardiovascular complications are a leading cause of death in patients with type 2 diabetes mellitus (T2DM). Diastolic dysfunction is one of the earliest manifestations of diabetes-induced changes in left ventricular (LV) function, and results from a reduced rate of relaxation and increased stiffness. The mechanisms responsible for increased stiffness are not completely understood. Chronic hyperglycemia, advanced glycation endproducts (AGEs), and increased levels of proinflammatory and profibrotic cytokines are molecular pathways known to be involved in regulating extracellular matrix (ECM) synthesis and accumulation resulting in increased LV diastolic stiffness. Experiments were conducted using a genetically-induced mouse model of T2DM generated by …
Optimal Bone Strength And Mineralization Requires The Type 2 Iodothyronine Deiodinase In Osteoblasts, J. H. D. Bassett, Alan Boyde, Peter G. T. Howell, Richard H. Bassett, Thomas M. Galliford, Marta Archanco, Holly Evans, Michelle A. Lawson, Peter Croucher, Donald L. St. Germain, Valerie A. Galton, Graham R. Williams
Optimal Bone Strength And Mineralization Requires The Type 2 Iodothyronine Deiodinase In Osteoblasts, J. H. D. Bassett, Alan Boyde, Peter G. T. Howell, Richard H. Bassett, Thomas M. Galliford, Marta Archanco, Holly Evans, Michelle A. Lawson, Peter Croucher, Donald L. St. Germain, Valerie A. Galton, Graham R. Williams
Dartmouth Scholarship
Hypothyroidism and thyrotoxicosis are each associated with an increased risk of fracture. Although thyroxine (T4) is the predominant circulating thyroid hormone, target cell responses are determined by local intracellular availability of the active hormone 3,5,3'-L-triiodothyronine (T3), which is generated from T4 by the type 2 deiodinase enzyme (D2). To investigate the role of locally produced T3 in bone, we characterized mice deficient in D2 (D2KO) in which the serum T3 level is normal. Bones from adult D2KO mice have reduced toughness and are brittle, displaying an increased susceptibility to fracture. This phenotype is characterized by a 50% reduction in bone …
Multiple Metabolic Hits Converge On Cd36 As Novel Mediator Of Tubular Epithelial Apoptosis In Diabetic Nephropathy., Katalin Susztak, Emilio Ciccone, Peter Mccue, Kumar Sharma, Erwin P Böttinger
Multiple Metabolic Hits Converge On Cd36 As Novel Mediator Of Tubular Epithelial Apoptosis In Diabetic Nephropathy., Katalin Susztak, Emilio Ciccone, Peter Mccue, Kumar Sharma, Erwin P Böttinger
Department of Medicine Faculty Papers
BACKGROUND: Diabetic nephropathy (DNP) is a common complication of type 1 and type 2 diabetes mellitus and the most common cause of kidney failure. While DNP manifests with albuminuria and diabetic glomerulopathy, its progression correlates best with tubular epithelial degeneration (TED) and interstitial fibrosis. However, mechanisms leading to TED in DNP remain poorly understood.
METHODS AND FINDINGS: We found that expression of scavenger receptor CD36 coincided with proximal tubular epithelial cell (PTEC) apoptosis and TED specifically in human DNP. High glucose stimulated cell surface expression of CD36 in PTECs. CD36 expression was necessary and sufficient to mediate PTEC apoptosis induced …
Characterization Of Insulin-Like Growth Factor Binding Protein-2 Secretion In Mouse Mesangial Cells, Marianne Ellen Albert
Characterization Of Insulin-Like Growth Factor Binding Protein-2 Secretion In Mouse Mesangial Cells, Marianne Ellen Albert
MUSC Theses and Dissertations
Dysregulation of the insulin-like growth factor (IGF) system plays a key role in the hyperproliferative state seen in diabetic complications. Enhanced IGF-I activity plays a causal role in diabetic glomerulosclerosis (DG) by stimulating mesangial cell proliferation, secretion and hypertrophy. Other alterations of the IGF system may include increased IGF-I receptor (IGF-IR) and increased IGF binding protein (IGFBP) expression. The IGFBP family consists of six soluble binding proteins, IGFBP 1-6, which have higher affinities for the IGFs than the IGF-IR, resulting in blocking IGF access to the IGF-IR. Since the IGFBPs primarily function to inhibit IGF action, we hypothesize that overexpression …