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OpenTrials
Completed

NCT Number: NCT02148471

Fatty Acids, Genes and Microbiota in Fatty Liver

The first aim of this study is to assess oxidative stress and nutritional status in patients with elevated liver enzymes who were found to have either simple steatosis (SS) or nonalcoholic steatohepatitis (NASH) or normal histological findings on liver biopsy by measuring liver lipid peroxides and tumor necrosis factor (TNF)-α, liver pathology and immunohistochemistry, liver function tests, liver and red blood cell membrane fatty composition, insulin resistance (IR) parameters, plasma lipid peroxides, plasma antioxidant vitamins and antioxidant power, lipid profile, subject demographics, medical history and medication use. The second aim is to detect differences in hepatic gene expression (messenger RNA, mRNA) and epigenetic regulation (micro RNA, miRNA) between patients with SS or NASH and healthy controls, in addition to determine in patients with non-alcoholic fatty liver disease (NAFLD = SS+NASH combined) whether there is an association between hepatic n-3 PUFA content and gene expression. The third aim is to determine the intestinal microbiome (microbial composition and metagenome) in patients with SS or NASH and healthy controls.

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Key information

Age range

18 year–70 year

Sex eligibility

All sexes

Study type

Observational

Primary location

Toronto General Hospital

Toronto, Ontario, M5G 1Z5, Canada

About this study

NASH is associated with obesity, diabetes and hyperlipidemia. Fat accumulation in the liver is likely due to variable degrees of disordered fatty-acid metabolism and insulin resistance (IR). Liver steatosis, especially polyunsaturated fatty acids (PUFA) in the liver, increases lipid peroxidation and is associated with a reduction in the antioxidant defense system. This oxidative stress can lead to increased production of pro-inflammatory cytokines (TNF-α, transforming growth factor-beta) contributing to the development of steatohepatitis and fibrosis.TNF-α - may further contribute to IR. In addition, changes in fatty acid composition within the liver may influence lipid metabolism and inflammation. In particular, n-3 PUFA have an effect on the insulin sensitivity, transcription of antioxidant genes, inflammatory response and production of reactive oxygen species. Differences might be seen on the gene expression level (mRNA) and also in epigenetic regulation (miRNA).

Microbiota composition might influence energy metabolism, and inflammatory tone and IR through increased endotoxemia and therefore could also play a role in the development of NAFLD.

Who can participate

Healthy volunteers accepted: Yes

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

Inclusion criteria

  • Male and female patients, age >18 y
  • A liver biopsy with a diagnosis of SS or NASH OR No signs of steatosis, fibrosis or any other kind of liver disease on histology (minimal findings) OR For healthy control subjects, those with normal liver enzymes and normal liver imaging on ultrasound
  • alcohol consumption (<20g of ethanol per day);
  • absence of any other possible cause for liver dysfunction.

Exclusion criteria

  • any other liver disease apart from NAFLD
  • anticipated need for liver transplantation in one year or complications of liver disease;
  • any reasons contraindicating a liver biopsy (patients) or liver donation (healthy donors)
  • chronic gastrointestinal diseases, previous gastrointestinal surgery modifying the anatomy, patients with diabetes requiring insulin.
  • medications known to precipitate steatohepatitis (corticosteroids, high dose estrogens, methotrexate, amiodarone, spironolactone, sulfasalazine, perhexiline maleate, diethylamino- ethoxyhexestrol (DH), tamoxifen, diethylstilbestrol, naproxen or oxacillin) or regular intake of non-steroidal anti-inflammatory drugs (except for low dose aspirin), use of ursodeoxycholic acid or any experimental drug in the 6 months prior to entry.
  • regular intake of prebiotics, probiotics, antibiotics, or laxatives; in the 3 months prior to study entry
  • Pregnant or lactating

Treatment and study plan

Primary outcomes

  1. Hepatic fatty acid composition in total lipids in liver biopsy

    Time frame: Baseline

    Gas chromatography

  2. Hepatic gene expression

    Time frame: Baseline

    mRNA by microarray

  3. Intestinal microbiota composition

    Time frame: Baseline

    Illumina 16S technology

Secondary outcomes

  1. Lipid peroxides in the liver

    Time frame: Baseline

    Test kit

  2. Hepatic liver antioxidant power

    Time frame: Baseline

    Test kit

  3. Hepatic microRNA expression in the liver

    Time frame: Baseline

    NanoString

  4. Intestinal microbiota - specific organisms and groups

    Time frame: Baseline

    Quantitative real-time polymerase chain reaction

  5. Intestinal microbiome on a genetic level

    Time frame: Baseline

    Illumina sequencing technology

  6. Short-chain fatty acids in stool

    Time frame: Baseline

    Gas chromatography

  7. Plasma endotoxin

    Time frame: Baseline

    Limulus assay

Other outcomes

  1. Hepatic phospholipid composition

    Time frame: Baseline

    Gas chromatography

  2. Red blood cell fatty acid and phospholipid composition

    Time frame: Baseline

    Gas chromatography

  3. Plasma fatty acid composition

    Time frame: Baseline

    Gas chromatography

  4. Plasma lipid peroxides

    Time frame: Baseline

    Test kit

  5. Plasma antioxidant vitamins

    Time frame: Baseline

    Vitamin C colorimetric, alpha- and gamma-tocopherol and beta-carotene by high-performance liquid chromatography

  6. Serum antioxidant power

    Time frame: Baseline

    Test kit

  7. TNF-alpha in the liver

    Time frame: Baseline

    Enzyme linked immunosorbent assay

  8. Immunohistochemistry

    Time frame: Baseline

    Staining for malondialdehyde, alpha-smooth muscle actin, transforming growth factor beta

  9. Free choline in serum

    Time frame: Baseline

    liquid chromatography/electrospray ionization-isotope dilution mass spectrometry (LC/ESI-IDMS)

  10. Bacterial DNA in plasma

    Time frame: Baseline

    Quantitative polymerase chain reaction for bacterial 16S rDNA

  11. Insulin resistance

    Time frame: Baseline

    Fasting glucose and insulin to calculate insulin resistance (HOMA-IR), C-peptide, hemoglobin A1c, all by standard laboratory methods

  12. Plasma ethanol

    Time frame: Baseline

    standard laboratory measurement

  13. Anthropometry

    Time frame: Baseline

    Weight, height, skinfolds, bioelectrical impedance analysis

  14. Food intake

    Time frame: Baseline

    7-day food records

  15. Physical activity

    Time frame: Baseline

    7 day activity logs

  16. Factors influencing intestinal microbiota

    Time frame: Baseline

    Environmental questionnaire

  17. Liver function tests

    Time frame: Baseline

    Alanine transaminase, aspartate transaminase, alkaline phosphatase, standard laboratory tests

Sponsors and collaborators

Lead sponsor

Johane Allard

Other

Collaborators

  • American College of Gastroenterology
  • Canadian Institutes of Health Research (CIHR)
  • Canadian Liver Foundation

Registry information

Official study title

Non-alcoholic Steatohepatitis Versus Simple Hepatic Steatosis: Is There a Difference in the Nutritional Factors Influencing Lipid Perioxidation and Inflammation?

Important dates

Study start
2003
Primary completion
2015
Study completion
2015
First posted
May 28, 2014
Registry last updated
May 12, 2016

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

View the official ClinicalTrials.gov record (opens in a new tab)

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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