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Clinical Trials/NCT04200560
NCT04200560CompletedNot Applicable

Autophagy Maintains Vascular Function Through a Novel Glycolysis-linked Pathway Regulating eNOS

University of Utah1 site in 1 country16 target enrollmentStarted: July 1, 2018Last updated:
Conditions
Interventions

Trial Snapshot

Phase
Not Applicable
Status
Completed
Enrollment
16
Locations
1
Primary Endpoint
Change in biomarker Atg7 after chronic exercise training

Study Overview

Brief Summary

Aging is inevitable and is the primary risk factor for developing cardiovascular disease. The molecular mechanisms that drive vascular dysfunction in the context of aging are incompletely understood. The overall hypothesis is that the age-related decline in endothelial cell (EC) autophagy leads to arterial dysfunction. This study will determine whether physiological shear-stress affects autophagosome formation and nitrous oxide (NO) generation in ECs.

Detailed Description

It is hypothesized that genetic autophagy suppression prevents shear-stress induced purinergic signaling to endothelial nitrous oxide synthase (eNOS) and this pathway will be evaluated in primary arterial ECs obtained from older adult (> 60 years) and adult (18-30 years) subjects before and following rhythmic handgrip exercise that elevates brachial artery shear-rate similarly in both groups. ECs will be used to quantify markers of EC autophagy, eNOS activation, and NO generation. The study will also determine whether exercise-training attenuates the aging-associated decline in EC autophagy, and whether intact autophagy is required for training-induced vascular improvements. To evaluate this potential, it will be determined whether one-limb rhythmic handgrip exercise training by older adult (> 60 y) human subjects is sufficient to elevate basal and shear-induced EC autophagy initiation, eNOS activation, and NO generation vs. the contralateral sedentary limb. Results from this work have tremendous potential to reveal a new therapeutic target and approach for restoring / maintaining vascular function in the aging population.

Study Design

Study Type
Interventional
Allocation
Non Randomized
Intervention Model
Single Group
Primary Purpose
Basic Science
Masking
None

Eligibility Criteria

Ages
18 Years to 90 Years (Adult, Older Adult)
Sex
All
Accepts Healthy Volunteers
Yes

Inclusion Criteria

  • •Candidates must be between 18 and 90 y of age
  • •Candidates must be free of overt disease as assessed by a) medical history; b) standard blood chemistries (chem. 7 panel), c) ECG at rest; d) limb vascular examination (ankle-brachial BP index > 0.9); e) resting BP < 140/90 mmHg; and f) skinfold % body fat assessment.
  • •Subjects will have a body mass index (BMI) between 19 and 30 and have plasma glucose concentrations < 7.0 mmol/L under fasting conditions and < 11.1 mmol/L at 120 minutes of an oral glucose tolerance test (OGTT)

Exclusion Criteria

  • •Candidates <18 or >90 y of age
  • •Candidates demonstrating abnormal ECG, ankle-brachial BP index <0.9, resting BP > 140/90
  • •Candidates demonstrating a BMI <19 or > 30
  • •Candidates demonstrating plasma glucose concentrations > 7.0 mmol/L under fasting conditions and > 11.1 mmol/L at 120 minutes of an oral glucose tolerance test (OGTT)
  • •Candidates demonstrating dyslipidemia (plasma total cholesterol > 240 mg/dl with LDL-cholesterol > 160 mg/dl)
  • •Candidates reporting a history of myocardial infarction, unstable cardiac ischemia, recent cardiac catheterization, carotid artery disease, transient ischemic attack
  • •Women taking hormone replacement therapy (HRT) currently or in the preceding year will be excluded from the proposed studies due to the direct vascular effects of HRT.

Arms & Interventions

Healthy Adult Subjects

Experimental

Healthy adult subjects (18 - 30 years) will be assessed for markers of EC autophagy, eNOS activation, and NO generation before and after Rhythmic Handgrip Exercise

Intervention: Rhythmic Handgrip Exercise (Other)

Healthy Older Adult Subjects

Experimental

Healthy older adult subjects (> 60 years) will be assessed for markers of EC autophagy, eNOS activation, and NO generation before and after Rhythmic Handgrip Exercise and after Chronic Exercise Training.

Intervention: Rhythmic Handgrip Exercise (Other)

Healthy Older Adult Subjects

Experimental

Healthy older adult subjects (> 60 years) will be assessed for markers of EC autophagy, eNOS activation, and NO generation before and after Rhythmic Handgrip Exercise and after Chronic Exercise Training.

Intervention: Chronic Exercise Training (Other)

Outcomes

Primary Outcomes

Change in biomarker Atg7 after chronic exercise training

Time Frame: 8 weeks

Change in biomarker beclin-1 after Rhythmic Handgrip Exercise

Time Frame: 60 min

Change in biomarker Atg3 after Rhythmic Handgrip Exercise

Time Frame: 60 min

Change in biomarker Atg5 after Rhythmic Handgrip Exercise

Time Frame: 60 min

Change in biomarker Atg7 after Rhythmic Handgrip Exercise

Time Frame: 60 min

Change in biomarker Lamp1 after Rhythmic Handgrip Exercise

Time Frame: 60 min

Change in biomarker Lamp2 after Rhythmic Handgrip Exercise

Time Frame: 60 min

Change in biomarker p62 after Rhythmic Handgrip Exercise

Time Frame: 60 min

Change in biomarker beclin-1 after chronic exercise training

Time Frame: 8 weeks

Change in biomarker Atg3 after chronic exercise training

Time Frame: 8 weeks

Change in biomarker Atg5 after chronic exercise training

Time Frame: 8 weeks

Change in biomarker Lamp1 after chronic exercise training

Time Frame: 8 weeks

Change in biomarker Lamp2 after chronic exercise training

Time Frame: 8 weeks

Change in biomarker p62 after chronic exercise training

Time Frame: 8 weeks

Secondary Outcomes

  • Change in biomarker p-eNOSS1177 after Rhythmic Handgrip Exercise(60 min)
  • Change in radial arterial diameter after chronic exercise training(8 weeks)
  • Change in radial arterial flow rate after chronic exercise training(8 weeks)
  • Change in radial arterial diameter after Rhythmic Handgrip Exercise(60 min)
  • Change in radial arterial flow rate after Rhythmic Handgrip Exercise(60 min)
  • Change in biomarker p-eNOSS1177 after chronic exercise training(8 weeks)

Investigators

Sponsor Class
Other
Responsible Party
Principal Investigator
Principal Investigator

John David Symons

Professor

University of Utah

Study Sites (1)

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