Reduction in circulating bile acid and restricted diffusion across the intestinal epithelium are associated with a decrease in blood cholesterol in the presence of oat β …

P Gunness, J Michiels, L Vanhaecke… - The FASEB …, 2016 - Wiley Online Library
ABSTRACT Although oat (1, 3: 1, 4)‐β‐glucan (BG) has been shown to decrease blood
cholesterol in intervention trials, the detailed mechanism is not yet defined, but restricted …

Reduction in circulating bile acid and restricted diffusion across the intestinal epithelium are associated with a decrease in blood cholesterol in the presence of oat …

P Gunness, J Michiels, L Vanhaecke… - The FASEB …, 2016 - researchportal.murdoch.edu.au
Reduction in circulating bile acid and restricted diffusion across the intestinal epithelium are
associated with a decrease in blood cholesterol in the presence of oat beta-glucan - Murdoch …

Reduction in circulating bile acid and restricted diffusion across the intestinal epithelium are associated with a decrease in blood cholesterol in the presence of oat β …

P Gunness, J Michiels, L Vanhaecke, S De Smet… - FASEB …, 2016 - biblio.ugent.be
Although oat (1, 3: 1, 4)-beta-glucan (BG) has been shown to decrease blood cholesterol in
intervention trials, the detailed mechanism is not yet defined, but restricted reabsorption of …

Reduction in circulating bile acid and restricted diffusion across the intestinal epithelium are associated with a decrease in blood cholesterol in the presence of oat β …

P Gunness, J Michiels, L Vanhaecke, S De Smet… - 2016 - hekyll.services.adelaide.edu.au
Although oat (1, 3: 1, 4)-β-glucan (BG) has been shown to decrease blood cholesterol in
intervention trials, the detailed mechanism is not yet defined, but restricted reabsorption of …

Reduction in circulating bile acid and restricted diffusion across the intestinal epithelium are associated with a decrease in blood cholesterol in the presence of oat β …

P Gunness, J Michiels, L Vanhaecke… - … publication of the …, 2016 - pubmed.ncbi.nlm.nih.gov
Although oat (1, 3: 1, 4)-β-glucan (BG) has been shown to decrease blood cholesterol in
intervention trials, the detailed mechanism is not yet defined, but restricted reabsorption of …

[引用][C] Reduction in circulating bile acid and restricted diffusion across the intestinal epithelium are associated with a decrease in blood cholesterol in the presence of …

P Gunness, J Michiels, L Vanhaecke… - FASEB …, 2016 - espace.library.uq.edu.au
Although oat (1, 3: 1, 4)-β-glucan (BG) has been shown to decrease blood cholesterol in
intervention trials, the detailed mechanism is not yet defined, but restricted reabsorption of …

Reduction in circulating bile acid and restricted diffusion across the intestinal epithelium are associated with a decrease in blood cholesterol in the presence of oat β …

P Gunness, J Michiels, L Vanhaecke, S De Smet… - 2016 - digital.library.adelaide.edu.au
Although oat (1, 3: 1, 4)-β-glucan (BG) has been shown to decrease blood cholesterol in
intervention trials, the detailed mechanism is not yet defined, but restricted reabsorption of …

[PDF][PDF] Reduction in circulating bile acid and restricted diffusion across the intestinal epithelium are associated with a decrease in blood cholesterol in the presence of …

P Gunness, J Michiels, L Vanhaecke, S De Smet… - researchgate.net
Although oat (1, 3: 1, 4)-b-glucan (BG) has been shown to decrease blood cholesterol in
intervention trials, the detailed mechanism is not yet defined, but restricted reabsorption of …

Reduction in circulating bile acid and restricted diffusion across the intestinal epithelium are associated with a decrease in blood cholesterol in the presence of oat β …

P Gunness, J Michiels, L Vanhaecke… - … : Official Publication of …, 2016 - europepmc.org
Although oat (1, 3: 1, 4)-β-glucan (BG) has been shown to decrease blood cholesterol in
intervention trials, the detailed mechanism is not yet defined, but restricted reabsorption of …