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The publication data currently available has been vetted by Vanderbilt faculty, staff, administrators and trainees. The data itself is retrieved directly from NCBI's PubMed and is automatically updated on a weekly basis to ensure accuracy and completeness.

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Results: 41 to 43 of 43

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Improved glucose control decreases the interaction of plasma low-density lipoproteins with arterial proteoglycans.
Edwards IJ, Terry JG, Bell-Farrow AD, Cefalu WT
(2002) Metabolism 51: 1223-9
MeSH Terms: Adult, Aged, Analysis of Variance, Blood Glucose, Diabetes Mellitus, Type 2, Female, Fructosamine, Glipizide, Glycated Hemoglobin A, Humans, Hypoglycemic Agents, Lipids, Lipoproteins, LDL, Male, Metformin, Middle Aged, Proteoglycans
Added February 24, 2014
0 Communities
1 Members
0 Resources
17 MeSH Terms
Frequency of inappropriate metformin prescriptions.
Horlen C, Malone R, Bryant B, Dennis B, Carey T, Pignone M, Rothman R
(2002) JAMA 287: 2504-5
MeSH Terms: Contraindications, Drug Utilization Review, Heart Failure, Humans, Hypoglycemic Agents, Metformin, Renal Insufficiency
Added December 10, 2013
0 Communities
1 Members
0 Resources
7 MeSH Terms
The acute effect of metformin on glucose production in the conscious dog is primarily attributable to inhibition of glycogenolysis.
Chu CA, Wiernsperger N, Muscato N, Knauf M, Neal DW, Cherrington AD
(2000) Metabolism 49: 1619-26
MeSH Terms: 3-Hydroxybutyric Acid, Acetoacetates, Alanine, Animals, Arteries, Dogs, Fatty Acids, Nonesterified, Female, Gluconeogenesis, Glucose, Glycerol, Glycogen, Hypoglycemic Agents, Kinetics, Lactic Acid, Liver, Male, Metformin, Plasma, Time Factors
Added December 10, 2013
0 Communities
1 Members
0 Resources
20 MeSH Terms