University of Utah
Salt Lake City, Utah, 84108, United States
NCT Number: NCT02971098
The over-65 population is not only increasing at an alarming rate, but because six out of 10 will be managing more than one chronic condition by 2030, they will make up a much greater proportion of hospitalizations than ever before. Hospitalizations for disease, injury, and/or surgery in this group are likely to impair physical mobility and, therefore, the older adults capacity to be physically active both during hospitalization and beyond. The resulting sedentary lifestyle is likely to be accepted as the "new normal", ultimately increasing the risk of skeletal muscle and metabolic dysfunction (e.g. impaired glucose disposal, insulin resistance). These devastating outcomes are neither inevitable nor necessary if prevented with an appropriate mechanism-based intervention.
A novel mechanism that may contribute to physical inactivity-induced insulin resistance is accumulation of inflammation and ceramide within skeletal muscle. Of interest, increased skeletal muscle inflammation and ceramide has been tied to various metabolic disturbances such as diabetes and insulin resistance. However, it is currently unknown if skeletal muscle inflammation and ceramide are a key mechanism associated with insulin resistance due to physical inactivity in older adults.
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Notify Me60 year–85 year
All sexes
Interventional
Not applicable
Salt Lake City, Utah, 84108, United States
The investigator team will recruit younger and older (N=8; 18-35y and 60-85 yrs) male and female adults recruited in the Salt Lake City area.
The investigator team will then schedule separate visits for Strength, Power and Physical Function and the separate visits for Lean Mass and OGTT measurements (see description below).
Maximal oxygen consumption (exercise testing) will be measured by a metabolic cart during a graded maximal exercise test on a stationary cycle ergometer. This test will be performed in the CCTS under direct supervision of an exercise physiologist.
Metabolic rate will be determined 30 minutes before the initiation of the insulin infusion and 30 minutes at the end of the insulin infusion period. Metabolic rate will be determined using a indirect calorimeter housed at the CCTS. To do so, the participant will be fitted with a canopy hood. The participant with breathe normally for 30 minutes during the procedure. The canopy will be removed then the first muscle biopsy will occur.
A vastus lateralis muscle biopsy will be sampled before and 3h after the clamp combined with periodic blood sampling for measure of fasting and insulin-stimulated insulin, glucose, muscle cell signaling endpoints, and specific ceramide species. Biopsies will occur on opposite legs. Muscle biopsies were be performed by trained CCTS nurses as we have done routinely in our bed rest studies in older adults. Muscle samples will then be flash-frozen in liquid nitrogen and stored for later analysis. After the clamp experiment, subjects will begin the reduced physical inactivity study which will take place at the participant home.
On Day 14, the participant again will return to the CCTS following an overnight fast and the insulin clamp study will be repeated in order to make comparisons to the pre insulin clamp study (Day 1).
Healthy volunteers accepted: Yes
Only the study team can determine whether someone qualifies for participation.
Inclusion criteria
Exclusion criteria
Participants will reduced their physical activity level to approximately 2000 steps or 75% of their normal activity levels.
Time frame: percent change from baseline at 14 days
Glucose infusion rate will be determined by a hyperinsulinemic-euglycemic clamp
Time frame: percent change from baseline at 14 days
lean mass will be determined by DXA scan
University of Utah
Other
Novel Molecular Mechanisms of Skeletal Muscle Insulin, Resistance if Physically Inactive Older Adults
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