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Metabolic Benefits of Drinking Blueberry Tea in Type 2 Diabetes

Metabolic Benefits of Drinking Blueberry Tea in Type 2 Diabetes

Status
UNKNOWN
Phases
NA
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT02629952
Enrollment
36
Registered
2015-12-15
Start date
2015-11-30
Completion date
2021-12-31
Last updated
2021-04-06

For informational purposes only — not medical advice. Sourced from public registries and may not reflect the latest updates. Terms

Conditions

Type 2 Diabetes

Keywords

glucose tolerance, type 2 diabetes, blueberry tea

Brief summary

Plant derived compounds, e.g. flavonoids from dark chocolate, green tea, or blueberries, show great potential as nutraceuticals for the treatment of various diseases such as type 2 diabetes (T2D). Flavonoids have been suggested to improve glucose metabolism, reduce blood lipids, reduce oxidative stress and improve vascular function. For these reasons we recently investigated the effects of daily consumption of locally produced blueberry tea and demonstrated that this could partially restore insulin sensitivity in an animal model. We propose to translate these findings to assess the efficacy of this nutraceutical as a new treatment for improving glucose tolerance in people with T2D.

Detailed description

Current treatments for T2D are limited, have unwanted side effects, and lose effectiveness over time. There is a growing public interest in the use of complementary and alternative approaches for treating insulin resistance and T2D. Blueberries, blueberry leaves and cinnamon have each been reported to improve insulin sensitivity or insulin action. Blueberry Boost™ is a locally produced Blueberry Tea and is a proprietary blend of dried blueberries (37% wt/wt), blueberry leaves, raspberry leaves, spearmint leaves and cinnamon. It is well established that improving glycemic control is important for managing insulin resistance and T2D and the associated vascular pathologies that directly contribute to end-organ damage (microvascular disease), hypertension and cardiovascular disease (stroke, heart attack and heart failure). We have recently demonstrated that a unique blueberry tea blend fully restores the vascular insulin sensitivity in muscle of the high-fat fed insulin-resistant rat model and is associated with substantial improvements in muscle glucose uptake and whole body insulin sensitivity. We propose to translate these findings to assess the efficacy of this nutraceutical as a new treatment for improving glucose tolerance in people with T2D. Aim: Determine whether chronic consumption (4 weeks) of blueberry tea can improve metabolic and vascular health in people with and without T2D.

Interventions

OTHERBlueberry Tea

Blueberry Tea

Sponsors

Menzies Institute for Medical Research
Lead SponsorOTHER

Study design

Allocation
RANDOMIZED
Intervention model
CROSSOVER
Primary purpose
TREATMENT
Masking
NONE

Eligibility

Sex/Gender
ALL
Age
18 Years to 75 Years
Healthy volunteers
Yes

Inclusion criteria

* Aged 18-75 years. * Normal to overweight (BMI 19-35 kg/m2). * On lifestyle or metformin only diabetes treatment. * Normotensive (seated brachial blood pressure \<160/100 mmHg). * No history of T2D (e.g. fasting plasma glucose \<7.0mM); or with clinically diagnosed T2D on metformin or lifestyle intervention only (e.g. fasting plasma glucose ≥7.0mM, HbA1c). * Willing to drink blueberry tea for 4 weeks (3 times per day with meals).

Exclusion criteria

* Age \<18 yrs or \>76 yrs * Morbidly obese with a BMI ≥36 kg/m2 * Not on lifestyle and/or metformin only treatment for diabetes (e.g. insulin injections, sulphonylureas). * History of myocardial infarction or stroke * History of malignancy within past 5 years (except for non-melanoma skin cancers) * Current smoker * History of severe liver disease * History of drug or alcohol abuse * Elective major surgery during the course of the study * Pregnancy/lactation * Currently consuming (or have regularly consumed in the past 2 months) blueberry tea, or supplements containing blueberries, blueberry leaves, raspberry leaves, spearmint or cinnamon. * Participation or intention to participate in another clinical research study during the study period. * Not willing to consume blueberry tea for 4 weeks.

Design outcomes

Primary

MeasureTime frameDescription
Improvement in Glucose Tolerance after 4 weeks of drinking blueberry tea.4 weeksOral glucose tolerance test (75g glucose) measured on 3 occasions: at baseline, after 4 weeks of drinking blueberry tea, and after 4 weeks of no treatment (randomized cross-over design). Blood glucose and plasma insulin levels measured at 0, 15, 30, 60, 90 and 120 min following consumption of glucose load.

Secondary

MeasureTime frameDescription
Improvement in Hemoglobin A1c (HbA1c) levels after 4 weeks of drinking blueberry tea.4 weeks.HbA1c levels measured on 3 occasions: at baseline, after 4 weeks of drinking blueberry tea, and after 4 weeks of no treatment (randomized cross-over design).
Improvement in fasting Serum Lipid (cholesterol, HDL, LDL,triglycerides) levels after 4 weeks of drinking blueberry tea.4 weeksFasting serum lipids (cholesterol, HDL, LDL,triglycerides) measured on 3 occasions: at baseline, after 4 weeks of drinking blueberry tea, and after 4 weeks of no treatment (randomized cross-over design).
Improvement in fasting serum pro-inflammatory cytokine (IL-6, IL-1b, CRP, TNFa) levels after 4 weeks of drinking blueberry tea.4 weeksFasting serum pro-inflammatory cytokines (IL-6, IL-1b, CRP, TNFa) assessed by ELISA will be measured on 3 occasions: at baseline, after 4 weeks of drinking blueberry tea, and after 4 weeks of no treatment (randomized cross-over design).
Improvement in fasting serum albumin levels after 4 weeks of drinking blueberry tea..4 weeksFasting serum albumin levels measured on 3 occasions: at baseline, after 4 weeks of drinking blueberry tea, and after 4 weeks of no treatment (randomized cross-over design).
Fasting serum electrolytes (Na, K, Cl, HCO3).4 weeksFasting serum electrolytes (Na, K, Cl, HCO3) measured on 3 occasions: at baseline, after 4 weeks of drinking blueberry tea, and after 4 weeks of no treatment (randomized cross-over design).
Improvement in Resting Blood Pressure (central and brachial blood pressure) after 4 weeks of drinking blueberry tea.4 weeksBlood Pressure (central and brachial blood pressure) will be measured by Mobil-O-Graph and assessed on 3 occasions: at baseline, after 4 weeks of drinking blueberry tea, and after 4 weeks of no treatment (randomized cross-over design).
Improvement in resting Augmentation Index after 4 weeks of drinking blueberry tea.4 weeksAugmentation index will be measured by Mobil-O-Graph and assessed on 3 occasions: at baseline, after 4 weeks of drinking blueberry tea, and after 4 weeks of no treatment (randomized cross-over design).
Improvement in large artery stiffness after 4 weeks of drinking blueberry tea.4 weeksLarge artery stiffness will be measured by Mobil-O-Graph and assessed on 3 occasions: at baseline, after 4 weeks of drinking blueberry tea, and after 4 weeks of no treatment (randomized cross-over design).

Countries

Australia

Contacts

Primary ContactMichelle A Keske, PhD
Michelle.Keske@deakin.edu.au+61 3 6226 2669

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Feb 4, 2026