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Showing 1-8 of 8 trials for Muscle-loss
Recruiting

Improving Mobility and Function Following Transfemoral Amputation: A Novel Approach to Reverse Volumetric Muscle Loss

Illinois · Chicago, IL

The purpose of this study is to investigate the relationship between thigh strength and walking ability and assess if using a blood pressure cuff on the leg improves strength and walking performance.

Recruiting

HMB Enriched Amino Acids to Reverse Muscle Loss in Cirrhosis

Ohio · Cleveland, OH

Loss of skeletal muscle mass or sarcopenia is the most common and potentially reversible complication in cirrhosis that increases morbidity and mortality before, during and after liver transplantation. No proven treatments exist for the prevention or reversal of sarcopenia in cirrhosis, primarily because the mechanisms responsible for this are unknown. Based on compelling preliminary studies and those of the co investigator, investigators hypothesize that the mechanism of reduced skeletal muscle mass in cirrhosis is due to a myostatin mediated impaired mTOR (mechanistic target of rapamycin) signaling resulting in reduced protein synthesis and increased autophagy. Investigators further postulate that leucine, a direct stimulant of mTOR, will reverse the impaired mTOR phosphorylation in the skeletal muscle of cirrhotics. The consequent increase in protein synthesis reduced autophagy will result in an increase in skeletal muscle mass. Investigators will test these hypotheses by quantifying the response to acute and long term (3 month) administration of hydroxymethyl butyrate (HMB) enriched essential amino acid compared with an isonitrogenous isocaloric non-essential balanced amino acid mixture (does not stimulate protein synthesis) in cirrhotic patients. Fractional protein synthesis rate (FSR) in skeletal muscle, responses of the molecular regulatory pathways of skeletal muscle protein synthesis, and autophagy flux will be quantified in the acute and long term protocols. Tracer studies using L-\[D5\]-phenylalanine (Phe) as a primed constant infusion (prime 2µmol.kg-1.hr-1; constant 0.05 µmol.kg-1.hr-1) with and L \[ring-D2\] tyrosine, forearm plethysmography, and sequential skeletal muscle biopsies (total of 3 per study subject) will be used to quantify these outcomes. Anthropometric, clinical and body composition measures will be additional outcome measures for the long term intervention. Expression of regulatory signaling proteins, myostatin, IGF-1 (insulin like growth factor) , phospho-Akt, phospho-AMPK (activated protein kinase), phospho-mTOR and phospho-p70s6k will be quantified by Western immunoblots. Autophagy flux will be measured by quantifying expression of the autophagosome proteins.

Recruiting

Leucine Enriched Essential Amino Acid Mixture to Reverse Muscle Loss in Cirrhosis

Ohio · Cleveland, OH

Loss of skeletal muscle mass or sarcopenia is the most common and potentially reversible complication in cirrhosis that increases morbidity and mortality before, during and after liver transplantation. No proven treatments exist for the prevention or reversal of sarcopenia in cirrhosis, primarily because the mechanisms responsible for this are unknown. Based on compelling preliminary studies and those of the co investigator, investigators hypothesize that the mechanism of reduced skeletal muscle mass in cirrhosis is due to a myostatin mediated impaired mTOR (mechanistic target of rapamycin) signaling resulting in reduced protein synthesis and increased autophagy. Investigators further postulate that leucine, a direct stimulant of mTOR, will reverse the impaired mTOR phosphorylation in the skeletal muscle of cirrhotics. The consequent increase in protein synthesis reduced autophagy will result in an increase in skeletal muscle mass. Investigators will test these hypotheses by quantifying the response to acute and long term (3 month) administration of leucine enriched essential amino acid (EAA/LEU) compared with an isonitrogenous isocaloric non-essential balanced amino acid mixture (does not stimulate protein synthesis) in cirrhotic patients. Fractional protein synthesis rate (FSR) in skeletal muscle, responses of the molecular regulatory pathways of skeletal muscle protein synthesis, and autophagy flux will be quantified in the acute and long term protocols. Tracer studies using L-\[D5\]-phenylalanine (Phe) as a primed constant infusion (prime 2µmol.kg-1.hr-1; constant 0.05 µmol.kg-1.hr-1) with and L \[ring-D2\] tyrosine, forearm plethysmography, and sequential skeletal muscle biopsies (total of 3 per study subject) will be used to quantify these outcomes. Anthropometric, clinical and body composition measures will be additional outcome measures for the long term intervention. Expression of regulatory signaling proteins, myostatin, IGF-1 (insulin like growth factor) , phospho-Akt, phospho-AMPK (activated protein kinase), phospho-mTOR and phospho-p70s6k will be quantified by Western immunoblots. Autophagy flux will be measured by quantifying expression of the autophagosome proteins.

Recruiting

NO Sensor to Record Wound Data in Acute or Chronic Wounds

Pennsylvania · Pittsburgh, PA

The purpose of this research is to evaluate the ability of a Nitric Oxide (NO) Sensor to collect NO measurement data from an open wound. Previous research suggests that NO levels may indicate the stage of healing the wound is in. This study is being done to determine if the NO Sensor can measure how much NO is in a participant's wound. The researcher will place the NO Sensor into a participant's wound to collect NO measurements for 30-60 minutes. The participant will then have 2 follow-up appointments to see how the wound heals over time.

Recruiting

PRotein Optimization With eXercise to Improve MUscle Mass and Functional outcomeS

Maryland · Baltimore, MD

The investigators have designed a 2-center, pilot feasibility, randomized controlled trial (PROXIMUS) to determine the feasibility and safety of a larger multi center, randomized open-label trial comparing high protein combined with individualized exercise vs. standard management during the acute phase of critical illness in children. The investigators aim to determine the impact of the intervention on preservation of muscle mass; and functional status at 1 month and 6 months after randomization.

Recruiting

Testing LiverWatch, a Home-Based Remote-Monitoring Intervention for Advanced Liver Disease

Michigan · Ann Arbor, MI

Remote healthcare monitoring for cirrhosis has shown promise in overcoming barriers to accessing specialty care, improving healthcare quality, and reducing mortality. The LiverWatch study is investigating whether a remote nutrition, physical activity, and education intervention can improve health outcomes in those with cirrhosis. In this clinical trial, individuals will be randomized to either enhanced usual care or the LiverWatch intervention. Both groups are given fitbits and asked to increase their step counts. Those in the Liverwatch group will be incentivized for increase their physical activity while also undergoing a personalized nutrition intervention and weekly symptom monitoring and cirrhosis education.

Recruiting

YOOMI: Effect of Gamified Physical Therapy Exercise Software on Inpatient Mobility

New Jersey · New Brunswick, NJ

Patients admitted to the hospital often develop functional impairments due to being in bed most of the day. Each day of bedrest leads to significant muscle loss. As a result, many patients become dependent on others or require rehabilitation at a facility to improve mobility and function prior to returning home. Staff in the hospital is limited and often unable to mobilize patients every day while hospitalized. The investigators are testing a new experimental gamified physical therapy exercise software to see if it can be a fun, enjoyable way to help mobilize patients without the assistance of staff. The primary aim of this pilot/proof of concept study is to determine whether gamified physical therapy software can help inpatients exercise within the safety of their own beds and preserve pre-hospitalization function.

Recruiting

GLP-1s to Enhance Lasting Optimal Weight

North Carolina · Winston-salem, NC

The goal of this study is to examine how tirzepatide affects body composition, bone health, and physical performance in older adults over a nine-month period. Participants will take tirzepatide weekly, have clinic visits every 4 weeks, meet study doctor and registered dietitian every 4 weeks in person or video conference, attend group intervention sessions twice a month via video conference, weigh daily with a study-provided smart scale, keep a record of all foods and beverages consumed, and use a study-provided activity tracker to keep track of daily step counts.