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CompletedNCT02145949Updated Jul 23, 2024Results posted

Mechanistic Approach to Preventing Atrophy and Restoring Function in Older Adults

A Phase 2 interventional study of Essential Amino Acids (EAA) and Placebo (Alanine) in Muscle Atrophy and Quality of Life, sponsored by University of Oregon. Completed at 2 sites in United States. Open to participants aged 50 Years to 80 Years. Per ClinicalTrials.gov, last updated 2024-07-23.

Sponsored by University of Oregon · Phase 2, Interventional, and Prevention

Phase
Phase 2
Study type
Interventional
Enrollment
80
Allocation
Randomized
Ages
50 Years to 80 Years
Sex
All
01

Study summary

As a function of the growing population of older adults, an estimated 3.48 million total knee arthroplasty (TKA) procedures will be performed annually in the U.S. by 2030. Despite the near-universal success of this surgery in mitigating chronic knee pain, TKA is not successful in restoring long-term physical function in older adults, primarily because of quadriceps muscle atrophy, which explains 77% of the strength deficits. Overall, strength and functional mobility in TKA patients is 30-50% below age-matched healthy controls. Functional tasks such as stair-climbing remain a clinical problem for 75% of patients following TKA. Muscle atrophy occurs in both operative and non-operative legs, and is essentially permanent for older patients because of their impaired ability to increase muscle mass. The purpose of this clinical research is to determine the effects of essential amino acid (EAA) supplementation on muscle mass, strength, and functional mobility following TKA in older adults. Based on strong preliminary data, the investigators hypothesize that twice-daily ingestion of 23 g of EAA for 1 wk before through 6 wk after TKA will increase basal rates of muscle protein synthesis via inactivation of catabolic signaling, and up-regulation of anabolic and cyto-protective proteins. The investigators further hypothesize that short-term atrophy prevention and accelerated return of functional mobility will lead to longer-term structural and functional adaptations, and improved quality of life in older TKA patients vs. Placebo. Identifying the mechanisms up-regulated by EAA treatment that preserve muscle volume and mobility will have a major impact on rehabilitation science. This study will accomplish two specific aims: (1) determine if EAA elevates basal rates of muscle protein synthesis by up-regulating anabolic pathways and cyto-protective proteins, and inactivating catabolic pathways in the short term vs. Placebo and (2) determine if short-term prevention of atrophy, weakness, and functional mobility leads to positive changes in muscle cell structure and function, and improved quality of life in the longer term vs. Placebo. This work is significant because it advances knowledge of the molecular and cellular changes occurring during muscle atrophy (Placebo) and atrophy prevention (EAA) in a clinical setting using a treatment that is broadly applicable, is well tolerated, and can be implemented immediately.

Read the detailed description

The investigative team has completed recent studies showing that essential amino acid (EAA) supplementation attenuates quadriceps atrophy and accelerates the return of functional mobility following TKA. For patients on EAA, quadriceps atrophy was only -6% and -3% in the operative and non-operative quadriceps, respectively, 6 wks after TKA, but -18% and -10%, respectively, in patients on Placebo, a threefold difference. Of clinical relevance, the patients on EAA were able to maintain strength and demonstrated an accelerated return of functional mobility vs. Placebo 6 wks post-TKA. Positive changes at the cellular level are likely responsible for the reduction in muscle loss and preservation of strength, and to explain the acceleration of the return of functional mobility. As such, we hypothesize that twice-daily ingestion of 23 g of EAA from 1 wk before to 6 wks after TKA will increase basal rates of muscle protein synthesis via inactivation of catabolic signaling (FoxO3a), and up-regulation of anabolic and cyto-protective proteins. We also propose that short-term atrophy prevention and accelerated return of functional mobility will translate into long-term (6 mo and 1 yr post-TKA) structural and functional adaptations, leading to improved quality of life in TKA patients with EAA supplementation vs. Placebo.

The study will use a two-arm parallel design to determine the effect of EAA supplementation on post-TKA muscle cell structure and function, and quality of life in the shorter term (6 months post-TKA) and long term (1 yr post-TKA) vs. Placebo. Subjects will be 80 older male and female adults having primary TKA at the Slocum Center for Orthopedics and Sports Medicine, Eugene, Oregon. Slocum study staff will pre-screen/identify potential subjects for recruitment based on inclusion/exclusion criteria. Eligible patients will be invited to join the study. After the completion of informed consent procedures, participants will be assigned a unique patient identification number, and randomly assigned to either EAA or Placebo on a 1:1 allocation ratio, with blinding of treatment condition to subject and research staff/statisticians collecting data. Twice-daily ingestion of 23 g of supplement will begin 7 days prior to TKA and end at 6 wks post. EAA subjects will receive EAA and Placebo subjects will receive the non-essential amino acid Alinine. Subjects will document compliance with the supplement protocol in a log book and will return empty vials. Subjects will be followed for 1 yr.

Key research questions are: (a) Does EAA prevent shorter-term (6 wks post-TKA) bilateral muscle atrophy, preserve quadriceps strength, and accelerate the return of functional mobility vs. Placebo? (b) Are there shorter-term sex differences on outcome measures? (c) Will EAA increase longer-term (6 mo post-TKA) quadriceps strength and functional mobility vs. Placebo? (d) Does EAA improve long-term (1 yr post-TKA) functional mobility and measures of quality of life vs. Placebo? (e) Are there long-term sex differences in functional mobility or measures of quality of life? Assessment points will be at 6 wks, 4 wks, and 1 wk prior to surgery, and 1 wk, 2 wks, 6 wks, 6 mos, and 1 yr post-TKA. At different assessment points, we will collect demographic, medical (e.g., length of hospital stay, tourniquet use), physiological (e.g., muscle biopsy, MRI, DEXA, strength; blood tests), pharmacologic, functional mobility, physical activity (accelerometer), psychometric (e.g., quality of life; Veterans RAND 12-item Health Survey [VR-12]), food intake (3-day diary), physical therapy, and perceived pain data. The following schedule of assessments will be followed: no more than 6 mo pre-TKA (enrollment and screening), 6 wks pre-TKA (screening, surveys, DEXA scan, MRI test, physical activity and food recording), 4 weeks pre-TKA (blood draw, strength and functional mobility testing, muscle and fat biopsy); 1 wk pre-TKA and in hospital (physical activity and food recording); 1 wk post-TKA (physical activity and food recording); 2 wks post-TKA (blood draw, physical activity and food recording); 6 wks post-TKA (blood draw, MRI test, strength and functional mobility testing, physical activity and food recording, muscle and fat biopsy); 3 mos post-TKA (surveys, strength and functional mobility testing, physical activity and food recording); 6 mos post-TKA (surveys, DEXA scan, MRI test, strength and functional mobility testing, physical activity and food recording, muscle and fat biopsy), and 1 yr (surveys, DEXA scan, MRI test, strength and functional mobility testing, physical activity and food recording, muscle and fat biopsy).

Data will be collected from a variety of sources, including surveys, electronic medical records, medical and functional tests, and staff reports. Data will be entered and double-verified in password-protected spreadsheets sand databases stored behind a firewall. Any electronic medical records data captured will use secure data transfer and HIPAA-compliant protocols approved by the University of Oregon IRB. Staff reports will be forwarded directly to project data managers. All personal data will be identified by numbers rather than names. Interim reports of project results will be made to the Data and Safety Monitoring Board.

Power analyses indicated that a sample size of 80 subjects would be sufficient to detect anticipated effects on primary outcomes: operative leg quadriceps volume (MRI), non-operative leg quadriceps volume (MRI), isometric strength, Get Up And Go test, stair climb up test, stair climb down test, and six-minute walk test. The mean effect size across these outcomes, based on baseline- to 6-week percent change in pilot data) was d = 1.01, reflecting large effects. For a sample size of 30/group, this study can detect ESs of d > .79 with 85% power, and the minimally detectable ES drops to 0.68 or 0.52 with pretest covariates of r = .50 or .75. Every effort will be made to reduce attrition and obtain data on all participants at all assessment points. However, attrition is expected. Because this study will have power to detect anticipated physiological and functional effects with 30 subjects per condition, we will enroll 80 total subjects (40/condition) to account for possible attrition.

The EAA intervention is designed to attenuate muscle loss, improve functional outcomes, and enhance quality of life. Data analyses will focus on shorter-term, longer-term results, and change over time. Preliminary analyses will employ descriptive statistics to understand the nature of the data and ensure that data distributions are appropriate for the statistical tests employed. Chi-square tests and analyses of variance, as appropriate, will be conducted to evaluate the equivalence of continuing participants vs. dropouts on demographic, medical history, and recent levels of dependent variables.

We will conduct random coefficients analysis (RCA) to model muscle and functional mobility across time, as well as covariates that could affect outcomes, such as age, sex, physical activity, and dietary intake. RCA models trajectories from assessments nested within subjects; test of condition are represented by the interaction between a time factor and treatment condition. The RCA avoids the many pitfalls associated with traditional repeated measures ANOVA: It adjusts for within-individual dependence or autocorrelation in the data, can model nonlinear growth, does not require fixed spacing among assessments, and accommodates missing values over time. By using any available data across time, the RCA will limit the effects of missing data, reducing bias and increasing power. Based on our preliminary data, we estimate that we will be able to collect >92% of all data points.

Expected study outcomes are as follows:

  1. With successful completion of this research, we expect to demonstrate that EAA prevents muscle atrophy bilaterally, as our preliminary data suggest. To date, it is not known if EAA can prevent atrophy.
  2. We expect to show that atrophy prevention will lead to strength gains and accelerated return of functional mobility. We further expect to show that EAA may have positive effects on central activation deficits, as our preliminary data suggest that strength is increased by 6 wks with EAA. To date, it is not known if preserving muscle following TKA will increase strength and augment the return of functional mobility.
  3. We expect to document that EAA will increase muscle cell size (CSA) bilaterally, in the vastus lateralis of the operative and non-operative quadriceps. It is not known if atrophy prevention and early return of functional mobility will stimulate positive gains in muscle cell structure.
  4. We expect to demonstrate that EAA increases mitochondrial mass bilaterally and increases mitochondrial respiration at rest. By sampling from the non-operative (control leg) and operative leg, we expect to show that EAA normalizes mitochondrial function over time (6 mo and/or 1 yr post-TKA). It is not known if early gains in functional mobility will positively impact muscle cell function.
  5. We expect to show that quality of life (as measured by instruments such as VR-12) will be significantly increased with EAA. It is not known to what extent the above positive gains will have on longer-term (6 mo and 1 yr) quality of life.

We expect each of the above to stimulate and be transformative. EAA supplements are inexpensive ($800/patient or $16/day), are well tolerated, and can be implemented immediately.

02

Conditions studied

  • Muscle Atrophy
  • Quality of Life

Keywords

  • aging
  • clinical
  • translational
  • functional mobility
  • total knee arthroplasty
03

In context

Muscular Atrophy

494 studies on the registry are indexed under Muscular Atrophy; 94 are open to participants now.

This study's enrollment of 80 is above the median of 33 across 335 interventional studies indexed under Muscular Atrophy.

Browse Muscular Atrophy studies →

Lead sponsor

University of Oregon is the lead sponsor of 75 studies on the registry; 18 are open to participants now.

Counted across the registry records on this site, refreshed daily.

04

Who can participate

Ages eligible
50 Years to 80 Years
Sexes eligible
All
Accepts healthy volunteers
No

Inclusion criteria

  • Age: between 50-80 years.
  • Primary TKA surgery.

Exclusion criteria

Exclusion Criteria:

  1. Previous TKA and/or total hip arthroplasty surgery (older subjects).
  2. Dementia or related mental issues that may potentially put the subject at risk as determined by the surgeon.
  3. Untreated endocrine disease (Hypo/Hyperthyroidism, Addison's or Cushing's syndrome, etc.).
  4. Significant heart, liver, kidney, blood, or respiratory disease.
  5. Peripheral vascular disease.
  6. Active cancer.
  7. Recent (within 6 months) treatment with anabolic steroids.
  8. Alcohol or drug abuse.
  9. Inability to have MRI
05

Study design

Phase
Phase 2
Primary purpose
Prevention
Allocation
Randomized
Intervention model
Parallel assignment
Masking
Quadruple (Participant, Care provider, Investigator, Outcomes assessor)
Enrollment
80 participants (actual)

Study arms

  • Experimental
    Essential Amino Acids (EAA)

    Aim 1: Twice-daily ingestion of 20 g of EAA for 1 wk before through 6 wk after TKA. Supplement composition for the EAAs: histidine, 2.2 g (11% of total); isoleucine, 2.0 g (10%); leucine, 3.6 g (18%); lysine, 3.2 g (16%); methionine, 0.6 g (3%); phenylalanine, 3.2 g (16%); threonine, 2.8 g (14%); and valine, 2.4 g (12%). Aim 2: Twice-daily ingestion of 23 g of EAA for 1 wk before through 6 wk after TKA. Supplement composition for the EAAs: histidine, 1.28 g (5% of total); isoleucine, 1.8 g (8%); leucine, 7.4 g (32%); lysine, 3.6 g (15%); methionine, 1.76 g (8%); phenylalanine, 3.1 g (13%); threonine, 1.9 g (8%); valine, 2.08 g (9%); and tryptophan, 0.5 g (2%).

    Drug: Essential Amino Acids (EAA)

  • Placebo comparator
    Placebo (Alanine)

    Aim 1: Twice-daily ingestion of 20 g of Alanine (Non-essential amino acid) for 1 wk before through 6 wk after TKA. The placebo supplement consists of 20 g (100%) alanine. Aim 2: Twice-daily ingestion of 23 g of Alanine (Non-essential amino acid) for 1 wk before through 6 wk after TKA. The placebo supplement consists of 23 g (100%) alanine.

    Drug: Placebo (Alanine)

Interventions

  • DrugEssential Amino Acids (EAA)

    Twice daily ingestion of 20 or 23 grams of EAA for 7 days leading up to surgery and continuing for 6 weeks after surgery \[surgery = primary total knee arthroplasty\]

    Also known as: L-Histidine, L-Isoleucine, L-Leucine, L-Lysine monohydrochloride, L-Methionine, L-Phenylalanine, L-Threonine, L-Valine, L-Tryptophan

  • DrugPlacebo (Alanine)

    Twice daily ingestion of 20 or 23 grams Placebo (alanine) for 7 days leading up to surgery and continuing for 6 weeks after surgery \[surgery = primary total knee arthroplasty\]

    Also known as: L-Alanine, A4349 (Non-essential amino acid)

06

What researchers measure

Primary outcomes

  1. MRI Quadriceps Involved Leg

    MRI of the bilateral lower extremities was performed utilizing a Siemens 3T Skyra to measure muscle volume in Arbitrary Units (AU). Low values = low volume. High values = higher volume. Dixon pulse sequence optimized for imaging near metal implants was used to capture T1-weighted, water, and fat images of the mid-thigh region. MRI of the bilateral lower extremities was performed utilizing a Siemens 3T Skyra (UO Lewis Center for Neuroimaging). Dixon pulse sequence optimized for imaging near metal implants was used to capture T1-weighted, water, and fat images of the mid-thigh region.

    Time frame: 6 weeks after baseline

  2. MRI Quadriceps Contralateral Leg

    MRI of the bilateral lower extremities was performed utilizing a Siemens 3T Skyra to measure muscle volume in Arbitrary Units (AU). Low values = low volume. High values = higher volume. Dixon pulse sequence optimized for imaging near metal implants was used to capture T1-weighted, water, and fat images of the mid-thigh region. MRI of the bilateral lower extremities was performed utilizing a Siemens 3T Skyra (UO Lewis Center for Neuroimaging). Dixon pulse sequence optimized for imaging near metal implants was used to capture T1-weighted, water, and fat images of the mid-thigh region.

    Time frame: 6 weeks after baseline

  3. MRI Hamstrings Involved Leg

    MRI of the bilateral lower extremities was performed utilizing a Siemens 3T Skyra to measure muscle volume in Arbitrary Units (AU). Low values = low volume. High values = higher volume. Dixon pulse sequence optimized for imaging near metal implants was used to capture T1-weighted, water, and fat images of the mid-thigh region. MRI of the bilateral lower extremities was performed utilizing a Siemens 3T Skyra (UO Lewis Center for Neuroimaging). Dixon pulse sequence optimized for imaging near metal implants was used to capture T1-weighted, water, and fat images of the mid-thigh region.

    Time frame: 6 weeks after baseline

  4. MRI Hamstrings Contralateral Leg

    MRI of the bilateral lower extremities was performed utilizing a Siemens 3T Skyra to measure muscle volume in Arbitrary Units (AU). Low values = low volume. High values = higher volume. Dixon pulse sequence optimized for imaging near metal implants was used to capture T1-weighted, water, and fat images of the mid-thigh region. MRI of the bilateral lower extremities was performed utilizing a Siemens 3T Skyra (UO Lewis Center for Neuroimaging). Dixon pulse sequence optimized for imaging near metal implants was used to capture T1-weighted, water, and fat images of the mid-thigh region.

    Time frame: 6 weeks after baseline

Secondary outcomes

  1. Daily Physical Activity

    Average daily calories expended in physical activity calculated from accelerometer data

    Time frame: 6 weeks after baseline

  2. Handgrip Strength

    Maximum isometric strength of the hand and forearm muscles measured by a handgrip dynamometer

    Time frame: 6 weeks after baseline

  3. Short Physical Performance Battery

    Short Physical Performance Battery. Minimum = 0. Maximum = 11. 0 representing extreme problems and 11 is no problems. The higher the score the better the outcome.

    Time frame: 6 weeks after baseline

  4. Timed Up and Go

    Time from a seated position to walk forward 3 meters, turn around, walk back 3 meters, and sit down again

    Time frame: 6 weeks after baseline

  5. 4-Meter Walk

    Time from a standing position to walk 4 meters through the finish line

    Time frame: 6 weeks after baseline

  6. Stair Climb Up

    Time to climb up 11 steps

    Time frame: 6 weeks after baseline

  7. Stair Climb Down

    Time to climb down 11 steps

    Time frame: 6 weeks after baseline

  8. 6-Minute Walk

    Total distance walked in 6 minutes

    Time frame: 6 weeks after baseline

  9. KOOS Symptoms

    Knee Injury and Osteoarthritis Outcome Score measuring patients' overall opinions about knee and associated problems. Minimum = 0. Maximum = 100. 0 representing extreme problems and 100 representing no problems.

    Time frame: 6 weeks after baseline

  10. KOOS Pain

    Knee Injury and Osteoarthritis Outcome Score measuring patients' opinions about knee-specific pain; 0-100 Minimum = 0. Maximum = 100. 0 representing extreme problems and 100 representing no problems.

    Time frame: 6 weeks after baseline

  11. KOOS Function Daily Living

    Knee Injury and Osteoarthritis Outcome Score measuring patients' opinions about knee-specific function in daily life; 0-100 Minimum = 0. Maximum = 100. 0 representing extreme problems and 100 representing no problems.

    Time frame: 6 weeks after baseline

  12. KOOS Function Sports/Recreation

    Knee Injury and Osteoarthritis Outcome Score measuring patients' opinions about knee-specific function in sport and recreation; 0-100 Minimum = 0. Maximum = 100. 0 representing extreme problems and 100 representing no problems.

    Time frame: 6 weeks after baseline

  13. KOOS Knee-Related Quality of Life

    Knee Injury and Osteoarthritis Outcome Score measuring patients' opinions about knee-related quality of life; 0-100 Minimum = 0. Maximum = 100. 0 representing extreme problems and 100 representing no problems.

    Time frame: 6 weeks after baseline

  14. PHQ-9

    Patient Health Questionnaire depression module measuring depression symptom severity; 0-27. 0 is minimum and 27 is maximum. Lower score is less depression symptoms. Higher score is high depression symptoms.

    Time frame: 6 weeks after baseline

  15. PCS12

    Veterans Rand 12-item Health Survey Physical Component Summary norm-referenced score reflecting physical health-related quality of life. Minimum = 0. Maximum = 100. 0 representing extreme problems and 100

    Time frame: 6 weeks after baseline

  16. MCS12

    Veterans Rand 12-item Health Survey Mental Component Summary norm-referenced score reflecting mental health-related quality of life. Minimum = 0. Maximum = 100. 0 representing extreme problems and 100

    Time frame: 6 weeks after baseline

07

Results

Posted Jul 23, 2024

Participant flow

Both aims will target older adults, ages 50 - 80 years for have elected to undergo primary total knee arthroplasty performed at PeaceHealth Sacred Heart Medical Center at RiverBend by Dr. Jewett, Lantz, Mohler or Shah. Between 2005-2010, they performed a total 2,066 TKAs. Of those, 1,406 of the patients were between 50-80 years of age (68%). A total of 120 subjects will be enrolled in the two study aims.

Participant flow — Overall Study
MilestoneEssential Amino Acids (EAA)Placebo (Alanine)
Started3136
Completed1920
Not completed1216

Outcome measures

PrimaryMRI Quadriceps Involved Leg

MRI of the bilateral lower extremities was performed utilizing a Siemens 3T Skyra to measure muscle volume in Arbitrary Units (AU). Low values = low volume. High values = higher volume. Dixon pulse sequence optimized for imaging near metal implants was used to capture T1-weighted, water, and fat images of the mid-thigh region. MRI of the bilateral lower extremities was performed utilizing a Siemens 3T Skyra (UO Lewis Center for Neuroimaging). Dixon pulse sequence optimized for imaging near metal implants was used to capture T1-weighted, water, and fat images of the mid-thigh region.

Time frame:
6 weeks after baseline
Reported as:
Mean · AU
MRI Quadriceps Involved Leg
AUEssential Amino Acids (EAA)Placebo (Alanine)
MRI Quadriceps Involved Leg43.87 ± 12.0838.31 ± 10.69
Statistical analysis
  • Essential Amino Acids (EAA) vs Placebo (Alanine) · ANCOVA · p = .03
PrimaryMRI Quadriceps Contralateral Leg

MRI of the bilateral lower extremities was performed utilizing a Siemens 3T Skyra to measure muscle volume in Arbitrary Units (AU). Low values = low volume. High values = higher volume. Dixon pulse sequence optimized for imaging near metal implants was used to capture T1-weighted, water, and fat images of the mid-thigh region. MRI of the bilateral lower extremities was performed utilizing a Siemens 3T Skyra (UO Lewis Center for Neuroimaging). Dixon pulse sequence optimized for imaging near metal implants was used to capture T1-weighted, water, and fat images of the mid-thigh region.

Time frame:
6 weeks after baseline
Reported as:
Mean · AU
MRI Quadriceps Contralateral Leg
AUEssential Amino Acids (EAA)Placebo (Alanine)
MRI Quadriceps Contralateral Leg54.41 ± 15.5046.44 ± 13.16
Statistical analysis
  • Essential Amino Acids (EAA) vs Placebo (Alanine) · ANCOVA · p = .01
PrimaryMRI Hamstrings Involved Leg

MRI of the bilateral lower extremities was performed utilizing a Siemens 3T Skyra to measure muscle volume in Arbitrary Units (AU). Low values = low volume. High values = higher volume. Dixon pulse sequence optimized for imaging near metal implants was used to capture T1-weighted, water, and fat images of the mid-thigh region. MRI of the bilateral lower extremities was performed utilizing a Siemens 3T Skyra (UO Lewis Center for Neuroimaging). Dixon pulse sequence optimized for imaging near metal implants was used to capture T1-weighted, water, and fat images of the mid-thigh region.

Time frame:
6 weeks after baseline
Reported as:
Mean · AU
MRI Hamstrings Involved Leg
AUEssential Amino Acids (EAA)Placebo (Alanine)
MRI Hamstrings Involved Leg63.76 ± 14.8855.93 ± 13.01
Statistical analysis
  • Essential Amino Acids (EAA) vs Placebo (Alanine) · ANCOVA · p = .04
PrimaryMRI Hamstrings Contralateral Leg

MRI of the bilateral lower extremities was performed utilizing a Siemens 3T Skyra to measure muscle volume in Arbitrary Units (AU). Low values = low volume. High values = higher volume. Dixon pulse sequence optimized for imaging near metal implants was used to capture T1-weighted, water, and fat images of the mid-thigh region. MRI of the bilateral lower extremities was performed utilizing a Siemens 3T Skyra (UO Lewis Center for Neuroimaging). Dixon pulse sequence optimized for imaging near metal implants was used to capture T1-weighted, water, and fat images of the mid-thigh region.

Time frame:
6 weeks after baseline
Reported as:
Mean · AU
MRI Hamstrings Contralateral Leg
AUEssential Amino Acids (EAA)Placebo (Alanine)
MRI Hamstrings Contralateral Leg67.50 ± 16.3358.75 ± 13.65
Statistical analysis
  • Essential Amino Acids (EAA) vs Placebo (Alanine) · ANCOVA · p = .01
SecondaryDaily Physical Activity

Average daily calories expended in physical activity calculated from accelerometer data

Time frame:
6 weeks after baseline
Reported as:
Mean · kcal/day
Daily Physical Activity
kcal/dayEssential Amino Acids (EAA)Placebo (Alanine)
Daily Physical Activity265.67 ± 151.43196.54 ± 80.34
Statistical analysis
  • Essential Amino Acids (EAA) vs Placebo (Alanine) · ANCOVA · p = .12
SecondaryHandgrip Strength

Maximum isometric strength of the hand and forearm muscles measured by a handgrip dynamometer

Time frame:
6 weeks after baseline
Reported as:
Mean · kg
Handgrip Strength
kgEssential Amino Acids (EAA)Placebo (Alanine)
Handgrip Strength30.74 ± 10.6128.03 ± 8.37
Statistical analysis
  • Essential Amino Acids (EAA) vs Placebo (Alanine) · ANCOVA · p = .03
SecondaryShort Physical Performance Battery

Short Physical Performance Battery. Minimum = 0. Maximum = 11. 0 representing extreme problems and 11 is no problems. The higher the score the better the outcome.

Time frame:
6 weeks after baseline
Reported as:
Mean · units on a scale
Short Physical Performance Battery
units on a scaleEssential Amino Acids (EAA)Placebo (Alanine)
Short Physical Performance Battery3.95 ± 0.233.90 ± 0.31
Statistical analysis
  • Essential Amino Acids (EAA) vs Placebo (Alanine) · ANCOVA · p = .71
SecondaryTimed Up and Go

Time from a seated position to walk forward 3 meters, turn around, walk back 3 meters, and sit down again

Time frame:
6 weeks after baseline
Reported as:
Mean · seconds
Timed Up and Go
secondsEssential Amino Acids (EAA)Placebo (Alanine)
Timed Up and Go9.87 ± 1.9210.90 ± 3.71
Statistical analysis
  • Essential Amino Acids (EAA) vs Placebo (Alanine) · ANCOVA · p = .76
Secondary4-Meter Walk

Time from a standing position to walk 4 meters through the finish line

Time frame:
6 weeks after baseline
Reported as:
Mean · seconds
4-Meter Walk
secondsEssential Amino Acids (EAA)Placebo (Alanine)
4-Meter Walk3.89 ± 0.323.90 ± 0.31
Statistical analysis
  • Essential Amino Acids (EAA) vs Placebo (Alanine) · ANCOVA · p = .40
SecondaryStair Climb Up

Time to climb up 11 steps

Time frame:
6 weeks after baseline
Reported as:
Mean · seconds
Stair Climb Up
secondsEssential Amino Acids (EAA)Placebo (Alanine)
Stair Climb Up7.95 ± 2.808.64 ± 3.40
Statistical analysis
  • Essential Amino Acids (EAA) vs Placebo (Alanine) · ANCOVA · p = .97
SecondaryStair Climb Down

Time to climb down 11 steps

Time frame:
6 weeks after baseline
Reported as:
Mean · seconds
Stair Climb Down
secondsEssential Amino Acids (EAA)Placebo (Alanine)
Stair Climb Down8.12 ± 3.229.53 ± 4.57
Statistical analysis
  • Essential Amino Acids (EAA) vs Placebo (Alanine) · ANCOVA · p = .89
Secondary6-Minute Walk

Total distance walked in 6 minutes

Time frame:
6 weeks after baseline
Reported as:
Mean · meters
6-Minute Walk
metersEssential Amino Acids (EAA)Placebo (Alanine)
6-Minute Walk464.56 ± 139.40477.02 ± 103.96
Statistical analysis
  • Essential Amino Acids (EAA) vs Placebo (Alanine) · ANCOVA · p = .48
SecondaryKOOS Symptoms

Knee Injury and Osteoarthritis Outcome Score measuring patients' overall opinions about knee and associated problems. Minimum = 0. Maximum = 100. 0 representing extreme problems and 100 representing no problems.

Time frame:
6 weeks after baseline
Reported as:
Mean · scores on a scale
KOOS Symptoms
scores on a scaleEssential Amino Acids (EAA)Placebo (Alanine)
KOOS Symptoms68.80 ± 12.3656.99 ± 15.70
Statistical analysis
  • Essential Amino Acids (EAA) vs Placebo (Alanine) · ANCOVA · p = .02
SecondaryKOOS Pain

Knee Injury and Osteoarthritis Outcome Score measuring patients' opinions about knee-specific pain; 0-100 Minimum = 0. Maximum = 100. 0 representing extreme problems and 100 representing no problems.

Time frame:
6 weeks after baseline
Reported as:
Mean · scores on a scale
KOOS Pain
scores on a scaleEssential Amino Acids (EAA)Placebo (Alanine)
KOOS Pain68.71 ± 8.9764.77 ± 14.87
Statistical analysis
  • Essential Amino Acids (EAA) vs Placebo (Alanine) · ANCOVA · p = .29
SecondaryKOOS Function Daily Living

Knee Injury and Osteoarthritis Outcome Score measuring patients' opinions about knee-specific function in daily life; 0-100 Minimum = 0. Maximum = 100. 0 representing extreme problems and 100 representing no problems.

Time frame:
6 weeks after baseline
Reported as:
Mean · score on a scale
KOOS Function Daily Living
score on a scaleEssential Amino Acids (EAA)Placebo (Alanine)
KOOS Function Daily Living81.41 ± 10.5276.16 ± 12.10
Statistical analysis
  • Essential Amino Acids (EAA) vs Placebo (Alanine) · ANCOVA · p = .33
SecondaryKOOS Function Sports/Recreation

Knee Injury and Osteoarthritis Outcome Score measuring patients' opinions about knee-specific function in sport and recreation; 0-100 Minimum = 0. Maximum = 100. 0 representing extreme problems and 100 representing no problems.

Time frame:
6 weeks after baseline
Reported as:
Mean · score on a scale
KOOS Function Sports/Recreation
score on a scaleEssential Amino Acids (EAA)Placebo (Alanine)
KOOS Function Sports/Recreation44.21 ± 27.7037.90 ± 22.87
Statistical analysis
  • Essential Amino Acids (EAA) vs Placebo (Alanine) · ANCOVA · p = .30
SecondaryKOOS Knee-Related Quality of Life

Knee Injury and Osteoarthritis Outcome Score measuring patients' opinions about knee-related quality of life; 0-100 Minimum = 0. Maximum = 100. 0 representing extreme problems and 100 representing no problems.

Time frame:
6 weeks after baseline
Reported as:
Mean · score on a scale
KOOS Knee-Related Quality of Life
score on a scaleEssential Amino Acids (EAA)Placebo (Alanine)
KOOS Knee-Related Quality of Life51.74 ± 17.7850.33 ± 16.33
Statistical analysis
  • Essential Amino Acids (EAA) vs Placebo (Alanine) · ANCOVA · p = .98
SecondaryPHQ-9

Patient Health Questionnaire depression module measuring depression symptom severity; 0-27. 0 is minimum and 27 is maximum. Lower score is less depression symptoms. Higher score is high depression symptoms.

Time frame:
6 weeks after baseline
Reported as:
Mean · score on a scale
PHQ-9
score on a scaleEssential Amino Acids (EAA)Placebo (Alanine)
PHQ-94.68 ± 3.703.68 ± 2.75
Statistical analysis
  • Essential Amino Acids (EAA) vs Placebo (Alanine) · ANCOVA · p = .18
SecondaryPCS12

Veterans Rand 12-item Health Survey Physical Component Summary norm-referenced score reflecting physical health-related quality of life. Minimum = 0. Maximum = 100. 0 representing extreme problems and 100

Time frame:
6 weeks after baseline
Reported as:
Mean · score on a scale
PCS12
score on a scaleEssential Amino Acids (EAA)Placebo (Alanine)
PCS1237.55 ± 8.8335.48 ± 7.27
Statistical analysis
  • Essential Amino Acids (EAA) vs Placebo (Alanine) · ANCOVA · p = .52
SecondaryMCS12

Veterans Rand 12-item Health Survey Mental Component Summary norm-referenced score reflecting mental health-related quality of life. Minimum = 0. Maximum = 100. 0 representing extreme problems and 100

Time frame:
6 weeks after baseline
Reported as:
Mean · score on a scale
MCS12
score on a scaleEssential Amino Acids (EAA)Placebo (Alanine)
MCS1252.11 ± 11.0154.76 ± 11.60
Statistical analysis
  • Essential Amino Acids (EAA) vs Placebo (Alanine) · ANCOVA · p = .81

Adverse events

Collected over baseline to 6 weeks. Non-serious events are listed at a 0% frequency threshold.

Adverse event summary by group
GroupDeathsSeriousOther
Essential Amino Acids (EAA)0/31 (0%)2/31 (6.5%)0/31 (0%)
Placebo (Alanine)0/36 (0%)4/36 (11.1%)0/36 (0%)
Most frequent serious events
Most frequent serious events
EventEssential Amino Acids (EAA)Placebo (Alanine)
NauseaGeneral disorders2/314/36

Baseline characteristics

31 subjects in EAA group began study and 19 completed study. 36 subjects in placebo group began study and 20 completed study.

Age, Categorical
Age, Categorical(Participants)Essential Amino Acids (EAA)Placebo (Alanine)Total
<=18 years000
Between 18 and 65 years81018
>=65 years111021
Age, Continuous
Age, Continuous(years)Essential Amino Acids (EAA)Placebo (Alanine)Total
Mean64.95 ± 5.9063.90 ± 5.3764.41 ± 5.87
Sex: Female, Male
Sex: Female, Male(Participants)Essential Amino Acids (EAA)Placebo (Alanine)Total
Female141125
Male5914
Sex: Female, Male
Sex: Female, Male(Participants)Essential Amino Acids (EAA)Placebo (Alanine)Total
Female141125
Male5914
Race (NIH/OMB)
Race (NIH/OMB)(Participants)Essential Amino Acids (EAA)Placebo (Alanine)Total
American Indian or Alaska Native101
Asian000
Native Hawaiian or Other Pacific Islander000
Black or African American011
White181937
More than one race000
Unknown or Not Reported000
Region of Enrollment
Region of Enrollment(participants)Essential Amino Acids (EAA)Placebo (Alanine)Total
United States192039
MRI Quadriceps Involved Leg
MRI Quadriceps Involved Leg(AU)Essential Amino Acids (EAA)Placebo (Alanine)Total
Mean48.66 ± 14.6244.81 ± 13.8246.63 ± 14.14
MRI Quadriceps Contralateral Leg
MRI Quadriceps Contralateral Leg(AU)Essential Amino Acids (EAA)Placebo (Alanine)Total
Mean55.49 ± 16.4349.98 ± 13.6452.59 ± 15.08

18 further baseline measures are reported on the registry.

08

Study locations

2 sites
  • University of Oregon
    Eugene, Oregon 97401-1240, United States
  • Slocum Center for Orthopedics and Sports Medicine
    Eugene, Oregon 97401, United States
09

References and documents

Publications

  • Dreyer HC, Owen EC, Strycker LA, Smolkowski K, Muyskens JB, Kirkpatrick TK, Christie AD, Kuehl KS, Lantz BA, Shah SN, Mohler CG, Jewett BA. Essential Amino Acid Supplementation Mitigates Muscle Atrophy After Total Knee Arthroplasty: A Randomized, Double-Blind, Placebo-Controlled Trial. JB JS Open Access. 2018 Jun 4;3(2):e0006. doi: 10.2106/JBJS.OA.18.00006. eCollection 2018 Jun 28. PubMed 30280129 ↗
  • Muyskens JB, Foote DM, Bigot NJ, Strycker LA, Smolkowski K, Kirkpatrick TK, Lantz BA, Shah SN, Mohler CG, Jewett BA, Owen EC, Dreyer HC. Cellular and morphological changes with EAA supplementation before and after total knee arthroplasty. J Appl Physiol (1985). 2019 Aug 1;127(2):531-545. doi: 10.1152/japplphysiol.00869.2018. Epub 2019 Jul 25. PubMed 31343947 ↗
  • Muyskens JB, Hocker AD, Turnbull DW, Shah SN, Lantz BA, Jewett BA, Dreyer HC. Transcriptional profiling and muscle cross-section analysis reveal signs of ischemia reperfusion injury following total knee arthroplasty with tourniquet. Physiol Rep. 2016 Jan;4(1):e12671. doi: 10.14814/phy2.12671. PubMed 26733251 ↗
  • Dreyer HC. Tourniquet Use During Knee Replacement Surgery May Contribute to Muscle Atrophy in Older Adults. Exerc Sport Sci Rev. 2016 Apr;44(2):61-70. doi: 10.1249/JES.0000000000000076. PubMed 26829246 ↗

Study documents

  • Protocol, analysis plan and consent form · Jan 26, 2019

Documents are hosted by the registry — open the source record to download them.

10

Updates

Tracking since Sep 25, 2026
No changes since tracking began. The registry record was last updated on Jul 23, 2024, before this site started recording changes on Sep 25, 2026. Its history is on ClinicalTrials.gov ↗
11

Registry details

Key details

Study ID
NCT02145949
Lead sponsor
University of Oregon
Collaborators
Slocum Center for Orthopedics and Sports Medicine, Slocum Research & Education Foundation, Oregon Research Institute, Oregon Health and Science University, University of Arkansas, National Institute on Aging (NIA)
Responsible party
Hans Dreyer (Assistant Professor, University of Oregon) — Principal investigator
First posted
May 23, 2014
Start date
Dec 2014
Primary completion
Feb 2020
Completion
Feb 2020
Results posted
Jul 23, 2024
Last update
Jul 23, 2024

Oversight

Data monitoring committee
Yes
View the source record on ClinicalTrials.gov ↗

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