The ability of oat β-glucan to lower postprandial glycemic responses has been attributed to the viscosity of the solution in which the fibre is solubilized. To our knowledge, no studies have investigated the effect of β-glucan solutions on glycemic response when concentration, and thus viscosity, is varied by changing the solution volume but not the β-glucan dose. Therefore, the investigators will test the effects of altering β-glucan solution viscosity by altering solution volume at a fixed amount of β-glucan fibre.
The ability of β-glucan to lower postprandial glycemic responses has been attributed to the viscosity of the solution in which the fibre is solubilized. It has been demonstrated that the viscosity of a β-glucan solution increases with the molecular weight (MW) of β-glucan polymers, as well as the dose or concentration (C) of those polymers in solution. Numerous studies have shown that glycemic response-lowering is strengthened when the C of a β-glucan solution of fixed liquid volume is increased by increasing β-glucan dose. However, the C of a β-glucan solution depends on not only the amount of fibre present but also on the solution volume. To our knowledge, no studies have investigated the effect of β-glucan solutions on glycemic response when C, and thus viscosity, is varied by changing the solution volume but not the β-glucan dose. Therefore, the investigators will test the effects of altering β-glucan solution viscosity by altering solution volume at a fixed amount of β-glucan fibre. Knowing how to incorporate β-glucan into solution so that its physiological benefits are preserved will assist in the development of β-glucan-containing functional foods.
Study Type
INTERVENTIONAL
Allocation
RANDOMIZED
Purpose
BASIC_SCIENCE
Masking
SINGLE
Enrollment
15
4g dose for each arm of trial. Form (volume and viscosity) varies between arms. 2h acute trial beginning between 8 and 10 am. Minimum 1 day wash out between arms.
Control without beta-glucan. Form (volume) varies between arms. 2h acute trial beginning between 8 and 10 am. Minimum 1 day wash out between arms.
GILabs
Toronto, Ontario, Canada
postprandial blood glucose
Two fasting blood samples spaced 5 minutes apart (-5 min and 0 min) were collected by finger-prick using a monoejector lancet device. Immediately following the collection of the second blood sample, subjects consumed a test solution and 250mL of a beverage of their choice (water, tea or coffee with milk and/ or artificial sweetener aspartame). Subjects received the same beverage and volume of that beverage for each test in the study. Additional finger-prick blood samples were taken at 10, 20, 30, 40, 50, 60, 90 and 120 minutes after the start of the meal.
Time frame: 2 h
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