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Completed

NCT Number: NCT04126551

Mitochondrial Methylation in Type 2 Diabetes

The overarching goal of this proposal is to determine whether DNA methylation of the mitochondrial DNA impairs mitochondrial function in insulin resistant states such as overweight/obesity and type 2 diabetes.

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Key information

Age range

21 year–55 year

Sex eligibility

All sexes

Study type

Observational

Primary location

Clinical and Translational Research Center (CaTS)

Tucson, Arizona, 85724, United States

About this study

To determine whether differences in human skeletal muscle DNA methylation patterns in the mitochondrial and nuclear genome can explain the lower abundance of ETC and OXPHOS mRNA and protein observed in insulin resistant skeletal muscle of overweight/obese and type 2 diabetic participants. To determine whether patterns of human skeletal muscle DNA methylation in the mitochondrial and nuclear genome are predictive of ETC function. We will isolate skeletal muscle mitochondria from metabolically well-characterized lean insulin sensitive, overweight/obese insulin resistant nondiabetic and obese insulin resistant type 2 diabetic volunteers, and functionally evaluate each ETC complex (I - IV) and complex V (ATP synthase).

Who can participate

Healthy volunteers accepted: Yes

Only the study team can determine whether someone qualifies for participation.

Inclusion criteria

  • Subjects must be 21-55 years old
  • Body Mass Index:

Lean, healthy BMI ≤25; Overweight,non-diabetic BMI 25-29.9; Obese, non-diabetic BMI 30-50; Type 2 Diabetes (per the American Diabetes Association criteria)

  • Subjects must be able to communicate meaningfully with the investigator and must be legally competent to provide written informed consent.
  • Female subjects must be non-lactating and will be eligible only if they have a negative pregnancy test throughout the study period, and must agree to use acceptable birth control (hormonal contraceptives, barrier methods, have an intrauterine device, or surgical sterilization)
  • Subjects must have the following laboratory values:
  • Hematocrit ≥ 35 vol%
  • Serum creatinine ≤ 1.6 mg/dl
  • AST (SGOT) < 2 times upper limit of normal
  • ALT (SGPT) < 2 times upper limit of normal
  • Alkaline phosphatase < 2 times upper limit of normal
  • Triglycerides < 150 mg/dl for nondiabetics
  • Triglycerides <300 for diabetics
  • INR ≤ 1.3
  • HbA1c ≤ 10

Exclusion criteria

  • Subjects must not be receiving any of the following medications: thiazide or furosemide diuretics, beta-blockers, or other chronic medications with known adverse effects on glucose tolerance levels unless the patient has been on a stable dose of such agents for the past three months before entry into the study. Subjects must not be taking estrogens or other hormonal replacement therapy unless the subject has been on these agents on a stable dose for the prior three months. Subjects taking systemic glucocorticoids are excluded. Patients with type 2 diabetes will be excluded if they are taking thiazolidinediones.
  • Subjects receiving Gemfibrozil must not also be receiving a statin.
  • Subjects with a history of clinically significant heart disease (New York Heart Classification greater than grade II; more than non-specific ST-T wave changes on the EKG), peripheral vascular disease (history of claudication), or pulmonary disease (dyspnea on exertion of one flight or less; abnormal breath sounds on auscultation) will not be studied.
  • Recent systemic or pulmonary embolus, untreated high-risk proliferative retinopathy, recent retinal hemorrhage, uncontrolled hypertension, systolic BP>160, diastolic BP>95, autonomic neuropathy, resting heart rate >100, electrolyte abnormalities.

Treatment and study plan

Methylation status

Other

Participants will be recruited, and muscle biopsies will be obtained for methylation analyses and measuring mitochondrial function

Primary outcomes

  1. Mitochondrial DNA methylation

    Time frame: 3 years

    Mitochondrial DNA methylation and D-loop of mitochondria is altered in insulin resistant states such as overweight/obesity and type 2 diabetes

Secondary outcomes

  1. Mitochondrial Function

    Time frame: 3 years

    The extent of mitochondrial function impairment in insulin resistant participants corresponds to the degree of methylation of the mitochondrial genome and D-loop

Sponsors and collaborators

Lead sponsor

University of Arizona

Other

Registry information

Official study title

Unraveling the Role of Mitochondrial DNA Methylation in Type 2 Diabetes

Important dates

Study start
2019
Primary completion
2023
Study completion
2023
First posted
Oct 15, 2019
Registry last updated
May 7, 2024

OpenTrials presents study information sourced from ClinicalTrials.gov. The official registry record should be consulted for the latest information.

View the official ClinicalTrials.gov record (opens in a new tab)

This listing is for discovery and informational purposes only. It is not medical advice, does not guarantee that a study is recruiting, and does not determine eligibility. Contact the study team and a qualified healthcare professional when considering participation.

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