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Type 1 Diabetes, Endothelin, and Skeletal Muscle Mitochondrial Dysfunction: The Role of Sirtuin-1

Type 1 Diabetes, Endothelin, and Skeletal Muscle Mitochondrial Dysfunction: The Role of Sirtuin-1

Status
Recruiting
Phases
Early Phase 1
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT04449198
Acronym
T-St1M
Enrollment
24
Registered
2020-06-26
Start date
2020-10-14
Completion date
2027-07-01
Last updated
2025-01-28

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

Conditions

Type 1 Diabetes

Keywords

diabetes, heart disease, muscle function, blood vessels

Brief summary

The proposed study is designed to test the hypothesis that treatment of resveratrol for 12 weeks will improve both endothelin-B receptor (aim 1) and skeletal muscle mitochondrial function (aim 2) in people with type 1 diabetes.

Detailed description

Preliminary data from the investigators' laboratory demonstrate a negative relationship between hemoglobin A1c (HbA1c) and ETBR function, supporting ETBR may be dysfunctional in the presence of T1D. Using near infrared spectroscopy (NIRS) to non-invasively assess muscle function, the investigators have also observed reduced skeletal muscle mitochondrial function in people with T1D compared to healthy controls. In addition, reduced circulating Sirt1 is associated with both ETBR and skeletal muscle mitochondrial dysfunction in the general population. For the current application, the investigators propose to utilize intradermal microdialysis and NIRS as unique, novel, and minimally invasive methods to investigate ETBR and skeletal muscle mitochondrial function, respectively, in people with T1D. Accordingly, the central hypothesis is that increasing circulating Sirt1 with oral supplementation of resveratrol will improve both ETBR function and mitochondrial skeletal muscle function, reducing overall CVD risk (Figure 1). The investigators will test this hypothesis with the following specific aims: Aim 1: To test the hypothesis that an increase in Sirt1 will improve ETBR function in people with T1D. The investigators will evaluate ETBR function and circulating Sirt1 at baseline and after a 12-week treatment of resveratrol or placebo. Based on preliminary data, the investigators predict that people with T1D will have ETBR dysfunction compared to controls. In addition, the investigators predict that increasing Sirt1 following resveratrol treatment will improve ETBR function, whereas no change will occur with placebo. Aim 2: To test the hypothesis that an increase in Sirt1 will improve skeletal muscle mitochondrial function and lower HbA1c in people with T1D. A non-invasive assessment of skeletal muscle function will be performed on people with T1D before and after 12-weeks of treatment with resveratrol or placebo. Compared to controls, the investigators predict that people with T1D will have skeletal muscle dysfunction. Following 12 weeks of resveratrol, the investigators predict that the increase in circulating Sirt1 will improve skeletal muscle function. Additionally, the investigators predict the improved skeletal muscle function will contribute to a subsequent decrease in HbA1c in people with T1D.

Interventions

DRUGResveratrol

500 mg of oral trans-resveratrol twice daily (in the morning and evening) for 12-weeks

OTHERPlacebo

placebo for 12 weeks

Sponsors

Augusta University
Lead SponsorOTHER

Study design

Allocation
RANDOMIZED
Intervention model
PARALLEL
Primary purpose
TREATMENT
Masking
DOUBLE (Subject, Investigator)

Eligibility

Sex/Gender
ALL
Age
18 Years to No maximum
Healthy volunteers
Yes

Inclusion criteria

* Men and premenopausal women * All races * Clinical diagnosis of insulin-dependent type 1 diabetes (patients only)

Exclusion criteria

* Clinical diagnosis of hepatic, cardiovascular, or renal disease * Uncontrolled diabetes (HbA1C \>12%) * Diabetic complications (i.e. neuropathy) * Uncontrolled hypertension (\>140/90 mm Hg on therapy) * Pregnancy * Use of vasoactive medications

Design outcomes

Primary

MeasureTime frameDescription
Change in AUC for ET-1 + BQ-123Measure taken at Baseline and post 12 weeksChange in Area Under the Curve (AUC) for Cutaneous Vascular Conductance (CVC) in response to co-perfusion of ET-1 + BQ-123 at 12 weeks. Measured using intradermal microdialysis technique in conjunction with Laser Speckle Contrast Imaging (Moor FLPI-2) and beat-by-beat blood pressure monitoring (Finapres NOVA).
Skeletal Muscle Mitochondrial FunctionMeasure taken at Baseline and post 12 weeksChange in Skeletal Muscle Mitochondrial Function at 12 weeks. Measured using Near Infrared Spectroscopy (NIRS). Values are an index of phosphocreatine recovery expressed as a rate constant (min-1)

Secondary

MeasureTime frameDescription
Change in Percentage Flow-Mediated Dilation (FMD)Measure taken at Baseline and post 12 weeksChange in Percentage FMD at 12 weeks. Measured via ultrasound in conjunction with edge detection software. Expressed as %
Change in Pulse Wave Velocity (PWV)Measure taken at Baseline and post 12 weeksChange in PWV at 12 weeks. Measured by Shygmocor Xcel in m/s.
Change in Post Occlusive Reactive Hyperemia (PORH)Baseline and post 12 weeksChange in PORH at 12 weeks. Measured by Laser Speckle Contrast Imager (Moor FLPI-2) in perfusion units (PU). Represents the maximal dilatory response in the microcirculation post 5 minute occlusion.

Countries

United States

Contacts

Primary ContactRyan A Harris, PhD, CEP
ryharris@augusta.edu7067215998
Backup ContactJacob Looney, MS
jlooney@augusta.edu7067215483

Outcome results

None listed

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