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1.
Appl Physiol Nutr Metab ; 42(8): 841-849, 2017 Aug.
Article in English | MEDLINE | ID: mdl-28363036

ABSTRACT

Diet-induced obesity, insulin resistance, impaired glucose tolerance, chronic inflammation, and oxidative stress represent the main features of type 2 diabetes mellitus. The present study was conducted to examine the efficacy and mechanisms of shrimp oil on glucose homeostasis in obese rats. Male CD rats fed a high-fat diet (52 kcal% fat) and 20% fructose drinking water were divided into 4 groups and treated with the dietary replacement of 0%, 10%, 15%, or 20% of lard with shrimp oil for 10 weeks. Age-matched rats fed a low-fat diet (10 kcal% fat) were used as the normal control. Rats on the high-fat diet showed impaired (p < 0.05) glucose tolerance and insulin resistance compared with rats fed the low-fat diet. Shrimp oil improved (p < 0.05) oral glucose tolerance, insulin response, and homeostatic model assessment-estimated insulin resistance index; decreased serum insulin, leptin, hemoglobin A1c, and free fatty acids; and increased adiponectin. Shrimp oil also increased (p < 0.05) antioxidant capacity and reduced oxidative stress and chronic inflammation. The results demonstrated that shrimp oil dose-dependently improved glycemic control in obese rats through multiple mechanisms.


Subject(s)
Dietary Fats/administration & dosage , Insulin Resistance , Obesity/diet therapy , Oils/administration & dosage , Shellfish , Adiponectin/blood , Animals , Anostraca , Biomarkers/blood , Blood Glucose/metabolism , Diet, High-Fat , Fatty Acids, Nonesterified/blood , Glucose Intolerance/diet therapy , Glycated Hemoglobin/metabolism , Insulin/blood , Leptin/blood , Male , Oxidative Stress/drug effects , Rats , Vitamin A/administration & dosage , Vitamin E/administration & dosage , Xanthophylls/administration & dosage
2.
Mar Drugs ; 13(6): 3849-76, 2015 Jun 18.
Article in English | MEDLINE | ID: mdl-26096274

ABSTRACT

Northern shrimp (Pandalus borealis) oil, which is rich in omega-3 fatty acids, was recovered from the cooking water of shrimp processing facilities. The oil contains significant amounts of omega-3 fatty acids in triglyceride form, along with substantial long-chain monounsaturated fatty acids (MUFAs). It also features natural isomeric forms of astaxanthin, a nutritional carotenoid, which gives the oil a brilliant red color. As part of our efforts in developing value added products from waste streams of the seafood processing industry, we present in this paper a comprehensive characterization of the triacylglycerols (TAGs) and astaxanthin esters that predominate in the shrimp oil by using HPLC-HRMS and MS/MS, as well as 13C-NMR. This approach, in combination with FAME analysis, offers direct characterization of fatty acid molecules in their intact forms, including the distribution of regioisomers in TAGs. The information is important for the standardization and quality control, as well as for differentiation of composition features of shrimp oil, which could be sold as an ingredient in health supplements and functional foods.


Subject(s)
Chromatography, High Pressure Liquid/methods , Oils/analysis , Pandalidae/chemistry , Tandem Mass Spectrometry/methods , Animals , Fatty Acids, Omega-3/analysis , Fatty Acids, Omega-3/isolation & purification , Magnetic Resonance Spectroscopy/methods , Oils/chemistry , Oils/isolation & purification , Triglycerides/analysis , Triglycerides/chemistry , Triglycerides/isolation & purification , Xanthophylls/analysis , Xanthophylls/chemistry , Xanthophylls/isolation & purification
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