National University of Singapore
Singapore, 118177
NCT Number: NCT03989908
In this study, microfluidics was applied in the creation of low-GI food gel made from non-traditional ingredients like alginate and soy protein isolate. This method is previously tested to produce lower glycaemic response than normal noodle and pasta.
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Notify Me21 year–65 year
All sexes
Interventional
Not applicable
Singapore, 118177
Research has confirmed that a food's glycemic effect cannot be accurately predicted from the type and amount of carbohydrates it contains, as the rate at which the carbohydrates is digested and released into the bloodstream is influenced by many factors such as the food's physical form, its fat, protein and fibre content, and the chemical structure of its carbohydrates. For these reasons, it is possible to produce food from the same group with different effects on blood glucose. Consumption of low GI food has shown to improve glycemic control, lipid profile and reduce systemic inflammation. However, there are few dietary intervention studies attempting to change the GI of food by changing the staple carbohydrates. In this study, microfluidics was applied in the creation of low-GI food gel made from non-traditional ingredients like alginate and soy protein isolate. This method is previously tested to produce lower glycaemic response than normal noodle and pasta. With noodles being one of the staples to many Singaporeans, food gels formed using functional ingredients derived from food sources offer a lower GI alternative to the conventional noodle and pasta without affecting the people dietary preference.
Healthy volunteers accepted: Yes
Only the study team can determine whether someone qualifies for participation.
Inclusion criteria
Exclusion criteria
Fasting glucose >=126mg/dL(>=7mmol/L) or 2 hour post-prandial glucose >=200mg/dL (>=11.1mmol/L)
In this intervention arm, subjects will be served with noodles made using microfludic technology.
In this intervention arm, subjects will be served with normal noodle.
Time frame: 2 hour
A meal tolerance test will be done to collect blood samples for glucose analysis at 0 min, 15 min, 30 min, 45 min, 60 min , 90 min and 120 min.The change in glucose response will be measured by comparing incremental area under the curve (iAUC) after ingestion of Microfluidic noodle meal and control Mee sua meal.
Time frame: 2 hour
A meal tolerance test will be done to collect blood samples for glucose analysis at 0 min, 15 min, 30 min, 45 min, 60 min , 90 min and 120 min.The change in insulin response will be measured by comparing incremental area under the curve (iAUC) after ingestion of Microfluidic noodle meal and control Mee sua meal.
Time frame: 2 hour
A meal tolerance test will be done to collect blood samples for glucose analysis at 0 min, 30 min, 60 min , 90 min and 120 min.The change in ghrelin level will be measured by comparing AUC after ingestion of Microfluidic meal and control Mee sua meal.
Time frame: 2 hour
A meal tolerance test will be done to collect blood samples for glucose analysis at 0 min, 30 min, 60 min , 90 min and 120 min.The change in GLP-1 level will be measured by comparing AUC after ingestion of Microfluidic meal and control Mee sua meal.
Time frame: 2 hour
A visual analogue scale (VAS) will be presented to the participants at 0, min, 30 min, 60 min , 90 min and 120 min, to indicate how they feel in response to 4 given statements by marking an "X" on a 100-mm line.
At time T=12 min, palatability of the treatment was assessed by five characteristics, from bad (0 mm) to good (100 mm). These characteristics were visual appeal, smell, taste, texture, and overall pleasantness of the meal given. Scores were determined by measuring the distance (in mm) from the let starting point of the line to the intersection of the "X". Subjects did not discuss their ratings.The primary outcome was area under the curve (AUC) for responses on the VAS calculated using the trapezoidal rule.
National University of Singapore
Other
Insulinemic and Glycemic Evaluation of Microfluidic Food Grade Gel in Food Applications.
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