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Completed

NCT Number: NCT03518294

NASH Fitness Intervention in Thrombosis Trial (NASHFit)

Nonalcoholic fatty liver disease (NAFLD) is the leading cause of chronic liver disease in the United States. The most advanced forms of NAFLD are associated with increased liver-related mortality and lower overall survival. The current standard of care for NAFLD is lifestyle changes through diet and exercise. The human genome and regulation of gene expression is influenced by physical activity. NAFLD is a prothrombotic state with derangements in all three phases of hemostasis leading to clinically important clotting events. Exercise can improve coagulation in healthy persons. In this proposal, we seek to begin a line of work to answer the question "Can lifestyle changes effectively mitigate the increased risk of clotting in patients with NAFLD?" focusing initially on the at-risk population genetically susceptible to advanced disease.

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Key information

Age range

18 year–70 year

Sex eligibility

All sexes

Study type

Interventional

Phase

Not applicable

Primary location

Penn State Hershey Medical Center

Hershey, Pennsylvania, 17033, United States

About this study

Often comorbid with obesity, nonalcoholic fatty liver disease (NAFLD) is the leading cause of chronic liver disease in the United States affecting 75-100 million adults, of which 15-20 million have the more severe variant nonalcoholic steatohepatitis (NASH). Conservative estimates project a doubling in NASH by 2025.The most advanced forms of NAFLD are associated with increased liver-related mortality and lower overall survival. The most effective treatment for NAFLD remains adopting healthy dietary and exercise patterns, however NAFLD patients are among the least physically active individuals. Predicting exercise behavior on an individual level is highly complex due to differing motivation, physiologic response to and subjective experience of exercise as well as emerging genetic evidence. The human genome and regulation of gene expression is influenced by physical activity. Patatin like phospholipase-3 (PNPLA3) rs738409 polymorphism (GG, GC and CC genotypes) plays a crucial role in the development of NAFLD. The GG genotype is both associated with advanced NAFLD, and predicts response to physical activity. Patients with NASH have extensive extrahepatic disease and are hypercoagulable. NASH is a prothrombotic state with fibrinolytic dysfunction through elevated plasminogen activator inhibitor (PAI-1), an independent risk factor for venous thromboembolism (VTE). Consequently, patients with NASH are predisposed to VTE; the risk of portal vein thrombosis (PVT) in NASH is 210% greater than in other liver disease. NASH patients are also at increased risk for pulmonary embolism (PE) and deep vein thrombosis (DVT).The most advanced forms of NASH have the greatest thrombotic risk. While studies observe that change in diet, weight and physical activity patterns improve NASH, it is not clear whether these lifestyle changes also reduce the elevated clot risk, however, moderate-intensity exercise leads to improved fibrinolysis in healthy persons.The NASHFit study is being done to find out if exercise is beneficial in decreasing the risk of clotting problems in patients with NASH. Exercise has been shown to decrease markers of clotting in healthy individuals as well as in those with cardiovascular disease.

Who can participate

Healthy volunteers accepted: No

Only the study team can determine whether someone qualifies for participation.

Inclusion criteria

Adults age >=18 or <70 years Liver biopsy <= 6months prior to enrollment Biopsy proven NASH(79)

Lack of secondary causes of hepatic fat accumulation:

Significant alcohol consumption (<21 drinks/week for men and <14 drinks/week for women) Chronic hepatitis C Wilson disease Lipodystrophy Parenteral nutrition Long-term use of steatogenic medications (mipomersen, lomitapide, amiodarone, methotrexate, tamoxifen, corticosteroids) Monogenic hereditary disorders

Exclusion criteria

>90 minutes/week of at least moderate intensity exercise over the previous three months Pregnancy BMI <18 or >40 kg/m2(16) Uncontrolled diabetes (changes in medication dosing over the previous three months or hemoglobin A1c >9%)(12) Active cardiac symptoms Severe medical comorbidities/psychiatric illness Decompensated cirrhosis (history of esophageal varices, ascites or hepatic encephalopathy) Abdominal hernia Cancer with life expectancy <6 months MRI contraindications (severe claustrophobia, implanted ferrous metal) Other liver disease (positive hepatitis B surface antigen, antinuclear antibody titer >1:160) Active weight-loss program participation or weight-loss supplement use Active substance abuse/smoking Inability to provide informed consent Institutionalized/prisoner Inability to walk > 2 blocks or ¼ mile. Physical Activity Readiness Questionnaire (PAR-Q) score >=1 at the discretion of the study PI

Treatment and study plan

Aerobic Exercise

Behavioral

Subjects in the aerobic exercise group will be supervised to exercise 30 minutes, 5 times per week at a moderate intensity. Formal exercise instruction and supervision will be provided by ACSM certified fitness professionals at the Penn State University Fitness Center. Aerobic exercise can be completed on either the treadmill, exercise bike, rowing machine or the elliptical machine.

Primary outcomes

  1. PAI-1 Level

    Time frame: 5 months

    Change in fibrinolysis as indicated by PAI-1 level was calculated by taking the difference of measurements at baseline and 5 months.

Secondary outcomes

  1. Change in Von Williebrand Factor (vWF)

    Time frame: 5 months

    Change in vWF was calculated by taking the difference of measurements at baseline and 5 months.

  2. Change in Protein S

    Time frame: 5 months

    Change in protein S was calculated by taking the difference of measurements at baseline and 5 months.

  3. Change in Factor VIII

    Time frame: 5 months

    Change in factor VIII was calculated by taking the difference of measurements at baseline and 5 months.

  4. Change in Fibrinogen

    Time frame: 5 months

    Change in fibrinogen was calculated by taking the difference of measurements at baseline and 5 months.

  5. Change in Antithrombin

    Time frame: 5 months

    Change in antithrombin was calculated by taking the difference of measurements at baseline and 5 months.

  6. Change in Protein C

    Time frame: 5 months

    Change in protein C was calculated by taking the difference of measurements at baseline and 5 months.

  7. Change in Adiponectin

    Time frame: 5 months

    Change in adipontin was calculated by taking the difference of measurements at baseline and 5 months.

  8. Patatin Like Phospholipase-3 (PNPLA3) rs738409 Polymorphism

    Time frame: 5 months

    Patatin like phospholipase-3 (PNPLA3) rs738409 polymorphism genotyping subjects (GG, GC and CC genotypes)

  9. Change in PAI-1 Stratified by Fibrosis Stage

    Time frame: 5 months

    Change is the difference between measurements at baseline and 5 months

  10. Change in % Hepatic Fat

    Time frame: 5 months

    Change in % hepatic fat was calculated by taking the difference of measurements at baseline and 5 months.

  11. Health Related Quality of Life (HRQOL) Change

    Time frame: 5 months (20 weeks)

    Data was collected at baseline and at 5 months to assess changes in domains of health.

    PROMIS-29 Profile v2.1 (Physical function & pain interference) PROMIS Bank v2.0 - Instrumental Support (Social Support)

    Scores are reported as standardized T-score metrics derived from population means, with a mean of 50 and standard deviation of 10. The minimum is 0 and the maximum is 90.

    A higher score for fatigue, pain intensity, pain interference, sleep disturbance, anxiety and depression means a worse outcome.

    A higher score for physical function and social roles means a better outcome.

Sponsors and collaborators

Lead sponsor

Milton S. Hershey Medical Center

Other

Registry information

Important dates

Study start
2018
Primary completion
2021
Study completion
2021
First posted
May 8, 2018
Registry last updated
Feb 3, 2023

OpenTrials presents study information sourced from ClinicalTrials.gov. The official registry record should be consulted for the latest information.

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This listing is for discovery and informational purposes only. It is not medical advice, does not guarantee that a study is recruiting, and does not determine eligibility. Contact the study team and a qualified healthcare professional when considering participation.

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