Excess accumulation of lipids in nonadipose tissues such as skeletal muscle and liver has been implicated in the development of obesity-related disorders, but the cause of this ectopic lipid overload remains unknown. The aim of this study was to determine in vivo postprandial lipid partitioning in rat skeletal muscle and liver, using localized (1) H-[(13) C] magnetic resonance spectroscopy in combination with the oral administration of (13) C-labeled lipids. Six rats were measured at baseline and 5 and 24 h after administration of 400 mg [U-(13) C]-labeled algal lipids. Five hours after administration, fractional (13) C enrichments of the lipid pools in muscle and liver were increased 3.9-fold and 4.6-fold (P < 0.05), respectively, indic...
Understanding the tissue distribution of phospholipids and glycerolipids in animal models enables pr...
PurposeAccumulation of triglycerides in nonadipose tissue (e.g. ectopic lipids) is characteristic of...
Rationale and Objectives: The aim of this study was to characterize early hepatic lipid changes in a...
Excess accumulation of lipids in nonadipose tissues such as skeletal muscle and liver has been impli...
Excess accumulation of lipids in nonadipose tissues such as skeletal muscle and liver has been impli...
Excess accumulation of lipids in nonadipose tissues such asskeletal muscle and liver has been implic...
Objective: Examine lipid handling in liver of rats fed with different high-fat diets using 1H-[13C] ...
Objective: To study in vivo lipid partitioning in insulin-resistant liver and muscle of diabetic rat...
Insulin resistance and type 2 diabetes have been associated with ectopic lipid deposition. This stud...
AIMS/HYPOTHESIS: Insulin resistance and type 2 diabetes have been associated with ectopic lipid depo...
Worldwide, diabetes has reached epidemic proportions, with type 2 diabetes accounting for ~90% of al...
Adipose tissue (AT) is distributed as large differentiated masses, and smaller depots covering vesse...
BACKGROUND: Fat accumulation in nonadipose tissue is linked to insulin resistance and metabolic dise...
Adipose tissue (AT) is distributed as large differentiated masses, and smaller depots covering vesse...
Understanding the tissue distribution of phospholipids and glycerolipids in animal models enables pr...
PurposeAccumulation of triglycerides in nonadipose tissue (e.g. ectopic lipids) is characteristic of...
Rationale and Objectives: The aim of this study was to characterize early hepatic lipid changes in a...
Excess accumulation of lipids in nonadipose tissues such as skeletal muscle and liver has been impli...
Excess accumulation of lipids in nonadipose tissues such as skeletal muscle and liver has been impli...
Excess accumulation of lipids in nonadipose tissues such asskeletal muscle and liver has been implic...
Objective: Examine lipid handling in liver of rats fed with different high-fat diets using 1H-[13C] ...
Objective: To study in vivo lipid partitioning in insulin-resistant liver and muscle of diabetic rat...
Insulin resistance and type 2 diabetes have been associated with ectopic lipid deposition. This stud...
AIMS/HYPOTHESIS: Insulin resistance and type 2 diabetes have been associated with ectopic lipid depo...
Worldwide, diabetes has reached epidemic proportions, with type 2 diabetes accounting for ~90% of al...
Adipose tissue (AT) is distributed as large differentiated masses, and smaller depots covering vesse...
BACKGROUND: Fat accumulation in nonadipose tissue is linked to insulin resistance and metabolic dise...
Adipose tissue (AT) is distributed as large differentiated masses, and smaller depots covering vesse...
Understanding the tissue distribution of phospholipids and glycerolipids in animal models enables pr...
PurposeAccumulation of triglycerides in nonadipose tissue (e.g. ectopic lipids) is characteristic of...
Rationale and Objectives: The aim of this study was to characterize early hepatic lipid changes in a...