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1.
Nutrients ; 9(1)2017 Jan 20.
Article in English | MEDLINE | ID: mdl-28117688

ABSTRACT

Specialty oils differ in fatty acid, phytosterol and antioxidant content, impacting their benefits for cardiovascular health. The lipid (fatty acid, phytosterol) and antioxidant (total phenolics, radical scavenging capacity) profiles of grapeseed (GSO), corn (CO) and coconut (CNO) oils and their physiological (triacylglycerides, total and HDL-cholesterol and antioxidant capacity (FRAP) in serum and fatty acid and phytosterol hepatic deposition) and genomic (HL, LCAT, ApoA-1 and SR-BP1 mRNA hepatic levels) responses after their sub-chronic intake (10% diet for 28 days) was examined in healthy albino rats. Fatty acid, phytosterol and antioxidant profiles differed between oils (p ≤ 0.01). Serum and hepatic triacylglycerides and total cholesterol increased (p ≤ 0.01); serum HDL-Cholesterol decreased (p < 0.05); but serum FRAP did not differ (p > 0.05) in CNO-fed rats as compared to CO or GSO groups. Hepatic phytosterol deposition was higher (+2.2 mg/g; p ≤ 0.001) in CO- than GSO-fed rats, but their fatty acid deposition was similar. All but ApoA-1 mRNA level increased in GSO-fed rats as compared to other groups (p ≤ 0.01). Hepatic fatty acid handling, but not antioxidant response, nor hepatic phytosterol deposition, could be related to a more efficient reverse-cholesterol transport in GSO-fed rats as compared to CO or CNO.


Subject(s)
Antioxidants/therapeutic use , Dietary Fats, Unsaturated/therapeutic use , Gene Expression Regulation , Hyperlipidemias/prevention & control , Lipid Metabolism , Liver/metabolism , Plant Oils/therapeutic use , Animals , Antioxidants/adverse effects , Antioxidants/analysis , Antioxidants/chemistry , Biomarkers/blood , Biomarkers/metabolism , Cholesterol, HDL/agonists , Cholesterol, HDL/antagonists & inhibitors , Cholesterol, HDL/blood , Coconut Oil , Corn Oil/adverse effects , Corn Oil/chemistry , Corn Oil/therapeutic use , Dietary Fats, Unsaturated/adverse effects , Fatty Acids/adverse effects , Fatty Acids/analysis , Fatty Acids/metabolism , Fatty Acids/therapeutic use , Hyperlipidemias/blood , Hyperlipidemias/etiology , Male , Oxygen Radical Absorbance Capacity , Phenols/adverse effects , Phenols/analysis , Phenols/therapeutic use , Phytosterols/adverse effects , Phytosterols/analysis , Phytosterols/metabolism , Phytosterols/therapeutic use , Plant Oils/adverse effects , Plant Oils/chemistry , Plant Oils/metabolism , Random Allocation , Rats, Wistar , Seeds/chemistry , Specific Pathogen-Free Organisms , Vitis/chemistry
2.
J Food Sci ; 79(11): C2185-91, 2014 Nov.
Article in English | MEDLINE | ID: mdl-25296624

ABSTRACT

One of the main quality parameters in apples is aroma, its main precursors are fatty acids (FA) and amino acids (AA). In this study, alginate edible coatings were used as carriers of linoleic acid or isoleucine to serve as precursors for the production of aroma in cut apples. Apple wedges were immersed in a CaCl2 solution and coated with one of the following formulations: alginate solution (Alg-Ca), Alg-Ca-low-level linoleic acid (0.61 g/Lt), (LFA), Alg-Ca-high-level linoleic acid (2.44 g/L; HFA), Alg-Ca-low-level isoleucine (0.61 g/L; LAA), and Alg-Ca-high-level isoleucine (2.44 g/L; HAA). Apple wedges were stored at 3 °C and 85% relative humidity for 21 d and key volatiles were studied during storage. Addition of precursors, mainly isoleucine, showed to increase the production of some key volatiles on coated fresh-cut apples during storage. The concentration of 2-methyl-1-butanol was 4 times higher from day 12 to day 21 in HAA, while 2-methyl butyl acetate increased from day 12 to day 21 in HAA. After 21 d, HAA-apples presented a 40-fold value of 2-methyl-butyl acetate, compared to Alg-Ca cut apples. Values of hexanal increased during cut apple storage when the coating carried linoleic acid, mainly on HFA, from 3 to 12 d. The ability of apples to metabolize AA and FA depends on the concentration of precursors, but also depends on key enzymes, previous apple storage, among others. Further studies should be done to better clarify the behavior of fresh-cut apples as living tissue to metabolize precursors contained in edible coatings for the production of volatiles.


Subject(s)
Alginates/chemistry , Food Preservation/methods , Isoleucine/chemistry , Linoleic Acid/chemistry , Malus/chemistry , Volatile Organic Compounds/analysis , Food Additives/chemistry , Fruit/chemistry , Glucuronic Acid/chemistry , Hexuronic Acids/chemistry
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