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RecruitingNCT06549452MhOVE-PPHUpdated Mar 27, 2026

Mobile Health Intervention to Improve Exercise in Pediatric PH

An interventional study of mHealth Intervention and Usual Care in Pulmonary Arterial Hypertension, sponsored by Vanderbilt University Medical Center. Recruiting at 1 site in United States. Open to participants aged 10 Years to 21 Years. Per ClinicalTrials.gov, last updated 2026-03-27.

Sponsored by Vanderbilt University Medical Center · Not applicable, Interventional, and Treatment

From the registry’s dates

  • Started Dec 2024; still recruiting 1 year 10 months later.
Phase
Not applicable
Study type
Interventional
Enrollment
50
Allocation
Randomized
Ages
10 Years to 21 Years
Sex
All
01

Study summary

Children and adults with pulmonary arterial hypertension (PAH) have severely reduced daily activity compared to healthy populations. In adults, investigators recently demonstrated that lower baseline daily step counts associated with increased risk of hospitalization and worsening WHO functional class; similarly, reduced step counts associate with hospitalization in children with PAH. This application builds on our recently completed NIH-funded pilot mobile health (mHealth) trial in adult patients with PAH which demonstrated the ability to remotely increase step counts. The investigators now aim to: (1) adapt our mHealth intervention to the developmental needs and interests of adolescents; and, (2) determine if our intervention increases step counts in adolescents, providing the foundation for a larger trial to assess the impact on quality of life and clinical outcomes.

02

Conditions studied

  • Pulmonary Arterial Hypertension
03

In context

Pulmonary Arterial Hypertension

761 studies on the registry are indexed under Pulmonary Arterial Hypertension; 142 are open to participants now.

This study's planned enrollment of 50 is above the median of 38 across 509 interventional studies indexed under Pulmonary Arterial Hypertension.

Browse Pulmonary Arterial Hypertension studies →

Lead sponsor

Vanderbilt University Medical Center is the lead sponsor of 824 studies on the registry; 164 are open to participants now.

Of its 122 completed or terminated interventional studies of FDA-regulated products, 91 (75%) have results posted.

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

04

Who can participate

Ages eligible
10 Years to 21 Years
Sexes eligible
All
Accepts healthy volunteers
No

Inclusion criteria

  • Adolescents between ages 10-21 years.
  • Diagnosed with WHO Group 1 PAH or WHO Group 4 PH (CTEPH)
  • WHO functional class I-III
  • Stable PAH-specific medication regimen for three months prior to enrollment. Subjects with only a single diuretic adjustment in the prior three months will be included. Adjustments in IV prostacyclin for side effect management are allowed.

Exclusion criteria

Exclusion Criteria:

  • Prohibited from normal activity due to wheelchair bound status, bed bound status, reliance on a cane/walker, activity-limiting angina, activity-limiting osteoarthritis, or other condition that limits activity.
  • Pregnancy
  • Diagnosis of PAH etiology other than idiopathic, heritable, or associated.
  • Functional class IV heart failure
  • Requirement of > 2 diuretic adjustment in the prior three months.
  • Preferred form of activity is not measured by an activity tracker (swimming, yoga, ice skating, stair master, or activities on wheels such as bicycling or rollerblading).
  • Involved in any other investigational intervention.
05

Study design

Phase
Not applicable
Primary purpose
Treatment
Allocation
Randomized
Intervention model
Parallel assignment
Masking
None (open label)
Enrollment
50 participants (estimated)

Study arms

  • Active comparator
    mHealth Intervention

    Patients will be randomized to the mHealth texting platform, which are messages designed to facilitate self-awareness, reinforce step targets, and link physical activity with a reward or memorable cue.

    Device: mHealth Intervention

  • Other
    Usual Care

    Routine medical care

    Device: Usual Care

Interventions

  • DevicemHealth Intervention

    Our HIPPA-compliant texting platform is linked to the Fitabase Interface. Real time activity data are transmitted from the participant's smartphone to Fitabase via cellular network. Participants will receive 3-5 texts/day in sync with their preferred schedule defined at enrollment and taking into account school schedules as relevant. These texts use personal, disease-specific, and provider information to deliver two types of messages customized to the current step count and sent in equal proportion. Messages are designed to facilitate self-awareness, reinforce step targets, and link physical activity with a reward or memorable cue.

  • DeviceUsual Care

    Routine medical care

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What researchers measure

Primary outcomes

  1. Change in average daily step count from baseline to 12 weeks

    To assess the effect of a mHealth intervention or no intervention on average daily step count from baseline to 12 weeks. Accelerometry is a direct measure of physical activity in patients' day-to-day lives. Step counts will be measured using the Fitbit device monitor, a lightweight device that has a three-axis acceleration sensor, altimeter, vibration motor, and optical heart rate monitor.

    Time frame: Baseline to 12 weeks

Secondary outcomes

  1. Change in Quality of Life as measured by the Short Form 36-Item Health Survey (SF-36)

    To assess the effect of a mHealth intervention or no intervention on quality of life between baseline and Week 12. The SF36 is one of the most widely used generic measures of subjective health status. The SF36 includes one multi-item scale that assesses eight health concepts. Scoring the SF 36-Item Health Survey is a two-step process. First, precoded numeric values are recoded per a scoring key. All items are scored so that a high score defines a more favorable health state. In addition, each item is scored on a 0 to 100 range so that the low

    Time frame: Baseline to 12 weeks

  2. Change in Quality of Life as measured by the emPHasis-10

    To assess the effect of a mHealth intervention or no intervention on quality of life between baseline and Week 12. The emPHasis-10 is a pulmonary hypertension-specific questionnaire to assess health related quality of life. It covers breathlessness, fatigue and lack of energy, social restrictions, and concerns regarding effects on patient's significant others, such as family and friends. Each item is scored on a semantic differential six-point scale (0-5), with contrasting adjectives at each end. A total emPHasis-10 score is derived using simple aggregation of the 10 items. emPHasis-10 scores range from 0 to 50, higher scores indicate worse quality of life.

    Time frame: Baseline to 12 weeks

  3. Change in Quality of Life as measured by the Pediatric Quality of Life Inventory (PedsQL)

    To assess the effect of a mHealth intervention or no intervention on quality of life between baseline and Week 12. The Pediatric Quality of Life Inventory (PedsQL) Measurement Model is a modular approach to measuring health-related quality of life (HRQOL) in healthy children and adolescents and those with acute and chronic health conditions. The PedsQL integrates seamlessly both generic core scales and disease-specific modules into one measurement system, which generally takes about 4 minutes to complete. Each item is scored on a 5-point Likert scale from 0 (Never) to 4 (Almost always), then reverse scored and linearly transformed to a 0-100 scale as follows: 0=100, 1=75, 2=50, 3=25, 4=0. Higher scores indicate better health-related quality of life.

    Time frame: Baseline to 12 weeks

  4. Change in Quality of Life as measured by the Pediatric Inventory for Parents (PIP)

    To assess the effect of a mHealth intervention or no intervention on quality of life between baseline and Week 12. The PIP is a questionnaire comprising 42 items, grouped into four domains or subscales: medical care, communication, emotional functioning, and role function. Its purpose is to measure the levels of stress suffered by parents caring for a child with a chronic disease. Responses are provided using a five-point Likert scale, ranging from 1 ("never/not at all") to 5 ("very often/extremely"). Higher scores indicate higher levels of stress.

    Time frame: Baseline to 12 weeks

  5. Difference in total daily activity from baseline to 12 weeks

    To assess the effect of a mHealth intervention or no intervention on total daily activity time from baseline to 12 weeks. Activity time is defined as time spent above 3 metabolic equivalents. Accelerometry is a direct measure of physical activity in patients' day-to-day lives. Activity time will be measured using the Fitbit device monitor, a lightweight device that has a three-axis acceleration sensor, altimeter, vibration motor, and optical heart rate monitor.

    Time frame: Baseline to 12 weeks

  6. Difference in unadjusted raw daily steps from baseline to 12 weeks

    To assess the effect of a mHealth intervention or no intervention on unadjusted change in raw daily steps from baseline to 12 weeks. Accelerometry is a direct measure of physical activity in patients' day-to-day lives. Step counts and will be measured using the Fitbit device monitor, a lightweight device that has a three-axis acceleration sensor, altimeter, vibration motor, and optical heart rate monitor.

    Time frame: Baseline to 12 weeks

  7. Difference in total daily aerobic time from baseline to 12 weeks

    To assess the effect of a mHealth intervention or no intervention on total daily aerobic time from baseline to 12 weeks. Aerobic time is defined as the total time spent walking continuously for \> 10 minutes without breaking for \> 1 minute. Accelerometry is a direct measure of physical activity in patients' day-to-day lives. Aerobic time will be measured using the Fitbit device monitor, a lightweight device that has a three-axis acceleration sensor, altimeter, vibration motor, and optical heart rate monitor.

    Time frame: Baseline to 12 weeks

  8. Difference in frequency of goal attainment from baseline to 12 weeks

    To assess the effect of a mHealth intervention or no intervention on frequency (% days) of goal attainment from baseline to 12 weeks. Accelerometry is a direct measure of physical activity in patients' day-to-day lives. Frequency (% days) of goal attainment will be measured using the Fitbit device monitor, a lightweight device that has a three-axis acceleration sensor, altimeter, vibration motor, and optical heart rate monitor.

    Time frame: Baseline to 12 weeks

  9. Difference in mean daily steps during week 12 and week 18

    To assess the effect of a mHealth intervention or no intervention on mean daily steps during week 12 and week 18. Accelerometry is a direct measure of physical activity in patients' day-to-day lives. Step counts will be measured using the Fitbit device monitor, a lightweight device that has a three-axis acceleration sensor, altimeter, vibration motor, and optical heart rate monitor.

    Time frame: Week 12 & Week 18

  10. Difference in B-type natriuretic peptide levels from baseline to 12 weeks

    To assess the effect of a mHealth intervention or no intervention on B-type natriuretic peptide levels (pg/mL) between baseline and 12 weeks.

    Time frame: Baseline to 12 weeks

  11. Difference in 6-Minute walk test distance from baseline to 12 weeks

    To assess the effect of a mHealth intervention or no intervention on the 6-minute walk test distance (meters) between baseline and 12 weeks.

    Time frame: Baseline to 12 weeks

  12. Difference in Echocardiographic pericardial effusion from baseline to 12 weeks

    To assess the effect of a mHealth intervention or no intervention on Echocardiographic pericardial effusion from baseline to 12 weeks.

    Time frame: Baseline to 12 weeks

  13. Difference in Echocardiographic maximal tricuspid regurgitant velocity from baseline to 12 weeks

    To assess the effect of a mHealth intervention or no intervention on Echocardiographic maximal tricuspid regurgitant velocity from baseline to 12 weeks.

    Time frame: Baseline to 12 weeks

  14. Difference in Echocardiographic measurement of RV fractional area change (FAC) from baseline to 12 weeks

    To assess the effect of a mHealth intervention or no intervention on Echocardiographic measurement of RV fractional area change (FAC) from baseline to 12 weeks.

    Time frame: Baseline to 12 weeks

  15. Time to clinical worsening

    To assess the effect of a mHealth intervention or no intervention on a composite outcome of PAH-related hospitalization, medication regimen escalation, decrease in vital status, and all-cause mortality at 12 weeks after randomization. Clinical worsening events are defined as death (all causes), hospitalizations due to worsening pulmonary arterial hypertension (PAH), escalation in WHO functional class, and initiation of an inhaled or infused prostacyclin (PGI2) for the treatment of worsening PAH.

    Time frame: Baseline to 12 weeks

07

Study locations

1 of 1 sites recruiting
  • Vanderbilt University Medical Center
    Nashville, Tennessee 37232, United States
    Recruiting
08

References and documents

Individual participant data

Plan to share: No

No publications or documents are linked to this record.

09

Updates

Tracking since Sep 25, 2026
No changes since tracking began. The registry record was last updated on Mar 27, 2026, before this site started recording changes on Sep 25, 2026. Its history is on ClinicalTrials.gov ↗
10

Registry details

Key details

Study ID
NCT06549452
Lead sponsor
Vanderbilt University Medical Center
Collaborators
University of California, San Francisco, National Heart, Lung, and Blood Institute (NHLBI)
Responsible party
Eric Austin (Director, Vanderbilt Pediatric Pulmonary Hypertension Program (Allergy/Immunology/Pulmonary Medicine) and Associate Professor of Pediatrics (Allergy/Immunology/Pulmonary Medicine), Vanderbilt University Medical Center) — Principal investigator
First posted
Aug 12, 2024
Start date
Dec 1, 2024
Primary completion
Nov 1, 2028 (estimated)
Completion
Nov 1, 2030 (estimated)
Last update
Mar 27, 2026

Study contacts

Natasha Billard
Contact
natasha.billard.1@vumc.org
(434) 851-3306
Eric Austin, MD
Contact
eric.austin@vumc.org
(615) 343-7617
Eric Austin, MD
principal investigator · Vanderbilt University Medical Center

Oversight

Data monitoring committee
Yes
FDA-regulated drug
No
FDA-regulated device
No
View the source record on ClinicalTrials.gov ↗

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