| Literature DB >> 26843021 |
Qianchun Deng1,2, Xiao Yu3,4, Jiqu Xu5,6, Xiuying Kou7, Mingming Zheng8,9, Fenghong Huang10,11, Qingde Huang12,13, Lan Wang14.
Abstract
BACKGROUND: Emerging evidence suggested phytosterol esters (PE) exhibited an advantage over naturally occurring phytosterols in reducing atherosclerosis risk factors due to improved fat solubility and compatibility. However, the effects of dietary patterns of PE on lipid-lowering activity were limited and inconsistent. This study aimed to explore the effects of dose and frequency of α-linolenic acid rich phytosterol esters (ALA-PE) on cholesterol and triglyceride metabolism markers focused on intestinal cholesterol absorption and bioconversion of ALA in liver.Entities:
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Year: 2016 PMID: 26843021 PMCID: PMC4739386 DOI: 10.1186/s12944-016-0185-8
Source DB: PubMed Journal: Lipids Health Dis ISSN: 1476-511X Impact factor: 3.876
Effect of α-linolenic acid rich phytosterol esters on body weight and food intake of high fat fed hamsters
| Groups | Initial weight(g) | Final weight(g) | Food intake(g/day) |
|---|---|---|---|
| HFD | 98.6 ± 3.3 | 117.3 ± 3.1 | 7.14 ± 1.26 |
| L-ALA-PE | 96.8 ± 4.7 | 121.5 ± 3.3 | 7.56 ± 2.55 |
| M- ALA-PE | 97.8 ± 2.8 | 117.6 ± 2.7 | 8.12 ± 2.34 |
| H- ALA-PE | 98.2 ± 3.8 | 118.7 ± 2.6 | 7.35 ± 2.31 |
HFD: High fat control group
L-ALA-PE: Low dose of α-linolenic acid rich phytosterol esters group
M-ALA-PE: Medium dose of α-linolenic acid rich phytosterol esters group
H-ALA-PE: High dose of α-linolenic acid rich phytosterol esters group
Fig. 1Effect of dose–response of α-linolenic acid rich phytosterol esters on plasma lipid levels of high fat fed hamsters. a The plasma TC and TG. b The plasma HDL-C, LDL-C and LDL/HDL. c The hepatic TC and TG. # p < 0.05 vs. HFD, ## p < 0.01 vs. HFD; HFD: High fat control group; L-ALA-PE: Low dose of α-linolenic acid rich phytosterol esters group; M-ALA-PE: Medium dose of α-linolenic acid rich phytosterol esters group; H-ALA-PE: High dose of α-linolenic acid rich phytosterol esters group
Fig. 2Effect of dose-frequency of α-linolenic acid rich phytosterol esters on plasma lipid levels of high fat fed hamsters. # p < 0.05 vs. HFD, ## p < 0.01 vs. HFD; HFD: High fat control group; ALA-PE1: α-linolenic acid rich phytosterol esters group1, received α-linolenic acid rich phytosterol esters by gavage once a day; ALA-PE2: α-linolenic acid rich phytosterol esters group2, received α-linolenic acid rich phytosterol esters by gavage twice a day; ALA-PE3: α-linolenic acid rich phytosterol esters group3, received α-linolenic acid rich phytosterol esters by gavage three times a day; ALA-PE4: α-linolenic acid rich phytosterol esters group4, received α-linolenic acid rich phytosterol esters by gavage four times a day
Fig. 3Effect of α-linolenic acid rich phytosterol esters on plasma antioxidant capacity and lipid peroxidation of high fat fed hamsters. a Plasma SOD (b) Plasma GPX (c) Plasma T-AOC (d) Plasma GSH. # p < 0.05 vs. HFD, ## p < 0.01 vs. HFD; HFD: High fat control group; L-ALA-PE: Low dose of α-linolenic acid rich phytosterol esters group; M-ALA-PE: Medium dose of α-linolenic acid rich phytosterol esters group; H-ALA-PE: High dose of α-linolenic acid rich phytosterol esters group
Fig. 4Effect of α-linolenic acid rich phytosterol esters on hepatic fatty acid composition of high fat fed hamsters. # p < 0.05 vs. HFD, ## p < 0.01 vs. HFD; HFD: High fat control group; L-ALA-PE: Low dose of α-linolenic acid rich phytosterol esters group; M-ALA-PE: Medium dose of α-linolenic acid rich phytosterol esters group; H-ALA-PE: High dose of α-linolenic acid rich phytosterol esters group
Fig. 5Effect of α-linolenic acid rich phytosterol esters on mRNA levels of intestinal ABCG5, ABCG8 and NPC1L1 of high fat fed hamsters. # p < 0.05 vs. HFD, ## p < 0.01 vs. HFD; HFD: High fat control group; L-ALA-PE: Low dose of α-linolenic acid rich phytosterol esters group; M-ALA-PE: Medium dose of α-linolenic acid rich phytosterol esters group; H-ALA-PE: High dose of α-linolenic acid rich phytosterol esters group