Fucoidan A2 from the Brown Seaweed Ascophyllum nodosum Lowers Lipid by Improving Reverse Cholesterol Transport in C57BL/6J Mice Fed a High-Fat Diet.
ATP Binding Cassette Transporter, Subfamily G, Member 5
/ genetics
Animals
Ascophyllum
/ chemistry
Biological Transport
/ drug effects
Cholesterol
/ metabolism
Cholesterol 7-alpha-Hydroxylase
/ genetics
Diet, High-Fat
/ adverse effects
Humans
Hyperlipidemias
/ drug therapy
Hypolipidemic Agents
/ administration & dosage
Lipid Metabolism
/ drug effects
Liver X Receptors
/ genetics
Male
Mice
Mice, Inbred C57BL
Plant Extracts
/ administration & dosage
Polysaccharides
/ administration & dosage
Receptors, LDL
/ genetics
Receptors, Scavenger
/ genetics
Seaweed
/ chemistry
ABC transporter
NPC1L1
PPAR agonist
cholesterol metabolism
Journal
Journal of agricultural and food chemistry
ISSN: 1520-5118
Titre abrégé: J Agric Food Chem
Pays: United States
ID NLM: 0374755
Informations de publication
Date de publication:
22 May 2019
22 May 2019
Historique:
pubmed:
6
5
2019
medline:
7
8
2019
entrez:
7
5
2019
Statut:
ppublish
Résumé
Reverse cholesterol transport (RCT) is a physiological process, in which excess peripheral cholesterol is transported to the liver and further excreted into the bile and then feces. Recently, fucoidans are reported to have a lipid-lowering effect. This study was designed to investigate whether fucoidan from the brown seaweed Ascophyllum nodosum lowers lipid by modulating RCT in C57BL/6J mice fed a high-fat diet. Our results indicated that fucoidan intervention significantly reduced plasma triglyceride, total cholesterol, and fat pad index and markedly increased high-density lipoprotein cholesterol in a dose-dependent manner. In the liver, fucoidan significantly increased the expression of peroxisome proliferator-activated receptor (PPAR)α, PPARγ, liver X receptor (LXR)β, adenosine triphosphate (ATP) binding cassette (ABC)A1, ABCG8, low-density lipoprotein receptor (LDLR), scavenger receptor B type 1 (SR-B1), and cholesterol 7-α-hydroxylase A1 (CYP7A1) and decreased the triglyceride level and expression of proprotein convertase subtilisin/kexin type 9 (PCSK9) and PPARβ but had no effect on LXRα, ABCG1, and ABCG5. In the small intestine, the fucoidan treatment significantly reduced the expression of Niemann-Pick C1-like 1 (NPC1L1) and improved ABCG5 and ABCG8. These results demonstrated that fucoidan can improve lipid transfer from plasma to the liver by activating SR-B1 and LDLR and inactivating PCSK9 and upregulate lipid metabolism by activating PPARα, LXRβ, ABC transporters, and CYP7A1. In the small intestine, this fucoidan can decrease cholesterol absorption and increase cholesterol excretion by activating NPC1L1 and ABCG5 and ABCG8, respectively. In conclusion, fucoidan from A. nodosum may lower lipids by modulating RCT-related protein expression and can be explored as a potential compound for prevention or treatment of hyperlipidemia-related diseases.
Identifiants
pubmed: 31055921
doi: 10.1021/acs.jafc.9b01321
doi:
Substances chimiques
ATP Binding Cassette Transporter, Subfamily G, Member 5
0
Hypolipidemic Agents
0
Liver X Receptors
0
Plant Extracts
0
Polysaccharides
0
Receptors, LDL
0
Receptors, Scavenger
0
fucoidan
9072-19-9
Cholesterol
97C5T2UQ7J
Cholesterol 7-alpha-Hydroxylase
EC 1.14.14.23
Types de publication
Journal Article
Langues
eng