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NCT Number: NCT07093346

The Impact of Pectin Supplementation on Systematic Inflammation Pathway, Gut Microbiome, and Metabolic Health in Patients With Metabolic Dysfunction-Associated Steatotic Liver Disease (MASLD)

The goal of this clinical trial is to learn if daily supplementation with Low-methoxy (LM) pectin (polysaccharides extracted from citrus peels), which are commonly found in the UK diet (not pharmacological agents), can reduce systemic inflammation and improve gut microbiota composition in adults recently diagnosed with Metabolic Dysfunction-Associated Steatotic Liver Disease (MASLD). The main question it aims to answer is:

-How does dietary Low-methoxy (LM) pectin supplementation affect systematic inflammation pathways such as those mediated by gut microbiota composition and what are the impacts on general metabolic indicators in individuals with MASLD?

Researchers will compare a group taking 15g of LM-pectin with 10g of cocoa powder to a placebo group receiving 10g of placebo with 10g of cocoa powder to see if LM-pectin has measurable effects on inflammation and gut microbiota.

Participants will:

* Take a daily supplement for 6 weeks: either 15g of LM-pectin with 10g of cocoa powder (intervention), or 10g of placebo with 10g of cocoa powder (control) * Provide stool and fasting blood samples before and after the intervention * Undergo anthropometric measurements (weight, height, waist/hip ratio, and blood pressure) * Complete a case report form (CRF) including demographics and health/medical history * Undergo a FibroScan™ to assess liver health * (Optional) Participate in MRI scans to evaluate gut permeability

Recruiting

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Key information

Age range

18 year and older

Sex eligibility

All sexes

Study type

Interventional

Phase

Not applicable

Primary location

Nottingham Clinical Research Facility at Nottingham University Hospitals NHS Trust, Nottingham, United Kingdom

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About this study

Primary Objective:

This research aims to study the effects of daily ingestion of LM pectin on inflammation pathways by measuring the blood inflammatory markers associated with physiological processes (TNFα, IL-6, IL-10, IFNᵞ, C - reactive protein, Zonulin (Haptoglobulin), IL-1β).

Secondary Objectives:

  • Assessment of changes in anthropometric measures.
  • Assessment of changes in general metabolic indicators, such as fasting blood glucose and other blood-based markers relevant to MASLD (e.g., CK18-M30, CK18-M65, PROC3, Enhanced Liver Fibrosis (ELF), NIS2+™, YKL-40, microRNA miR-34a-5p, liver-associated enzymes such as Alanine Aminotransferase (ALT), Aspartate Aminotransferase (AST), gamma-glutamyl transferase (GGT), Alkaline Phosphatase (ALP)), bilirubin levels, lipid profiles, and platelet counts.
  • Exploration of changes in gut microbiome composition.
  • Exploration of modifications in non-invasive physiological assessments linked to liver characteristics, such as fat content and stiffness through controlled attenuation parameter (CAP) and transient elastography.
  • Observation of alteration in fat in liver and other surrounding abdominal organs through Dixon MRI sequence in patients who will agree to have 2 MRI scans.
  • Validation of MRI measures (T2*) as a tool to measure gut permeability among MASLD patients and investigation of changes in gut permeability in participants undergoing two MRI scans.
  • Investigation the presence of gene variants such as MUC2, encoding Mucin protein, that are associated with gut permeability.

Who can participate

Healthy volunteers accepted: Yes

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

Inclusion criteria

Inclusion criteria

for the main study:

  • Patients with clinical diagnosis of MASLD (formerly termed non-alcoholic fatty liver disease (NAFLD)), having assessment suggesting that liver fat > 5% (e.g. histological evidence or/ and Transient Elastography using Controlled Attenuation Parameter (CAP)- FibroScan™ in the past month and/or liver imaging (such as ultrasound, computerized tomography (CT) or magnetic resonance imaging (MRI)).
  • Participants willing and able to give informed consent for participation in the study.
  • Participants aged ≥18 years who have a body mass index (BMI) between 18.5 and 39.9 kg/m2 and stable weight (weight gain or loss ≤ 3kg) for the past 3 months.
  • For diabetic participants: controlled blood glucose levels Haemoglobin A1C (HbA1c) <7.0% (<53 mmol/mol) [1].
  • Able to undergo CAP-FibroScan™.

Inclusion criteria

for healthy participants who will have MRI scans:

  • Participants willing and able to give informed consent for participation in the study.
  • Participants aged ≥18 years.
  • participants with CAP<250 kpa<8kP by a FibroScan™ within the past 6 months.

Exclusion criteria

Exclusion criteria

for the main study:

  • Have allergy toward soya, milk or chocolate.
  • Have allergy toward pectin.
  • Participants on vegan diet.
  • Have eating disorders or difficulties or gastrointestinal conditions e.g. malabsorptive conditions such as coeliac, Irritable Bowel Syndrome (IBS) or Inflammatory Bowel Disease (IBD) or gastroparesis.
  • Have chronic malnutrition condition.
  • History of major surgery which potentially limits participation or completion of the study.
  • History of previous intestinal surgery known to affect food intake or digestive function, including bariatric surgery.
  • Use of antibiotics, antifungal medications, probiotics or prebiotics 90 days before the start of the study.
  • Are taking the following medications: immunosuppressants, amiodarone and/or perhexiline.
  • Are currently following or anticipated to commence a specialised commercially available weight loss diet and/or program or concomitant use of any weight loss medication or herbal weight loss products.
  • History of side effects towards probiotics or prebiotics.
  • History or current psychiatric illness.
  • History or current neurological condition (e.g. epilepsy).
  • Participants with other liver abnormalities.
  • Evidence of monogenic metabolism diseases such as Lysosomal acid lipase deficiency (LALD), Wilson disease, Hypobetalipoproteinemia, or inborn errors of metabolism.
  • Have had a weight change exceeding 3 kg within 3 months.
  • Uncontrolled diabetes, active malignancy, or chronic infections.
  • Having symptoms of active infection.
  • Excessive alcohol intake defined as self-reported intakes greater than 21 units per week in men, and 14 units per week in women.
  • Participants who are pregnant, breast feeding or actively planning pregnancy will be excluded from the study.
  • Participation in any other trial in the last 3 months.

Exclusion criteria

for healthy volunteers MRI scans and patients optional MRI scans:

  • Contraindications for MRI scanning: having pacemakers, defibrillators, neurostimulators, prohibited medical implants, and foreign bodies (e.g. bullets, shrapnel, metal slivers), history of metallic foreign body in eye(s) and penetrating eye injury that could present a risk during an MRI scan.
  • Difficulty breathing or inability to lie flat, as well as conditions that could worsen under stress (such as anxiety or panic disorders, claustrophobia, uncontrolled hypertension, or seizure disorders) severe enough to prevent undergoing an MRI.

Treatment and study plan

Pectin

Dietary Supplement

15g of pectin with 10g of cocoa powder added as flavour were randomly allocated to eligible participants.

Cocoa Powder

Other

10g of cocoa powder served as the control/ placebo to compare the effects observed with pectin.

Magnetic Resonance Imaging with Contrast

Diagnostic Test

To validate MRI scans as a tool to assess intestinal wall thickness to indicate gut permeability on MASLD patients, the investigators will scan 15 healthy volunteers twice, at baseline and after 6 weeks, and then compare their results with MASLD participant results at baseline and after 6 weeks.

Other names: MRI

Primary outcomes

  1. Quantification of blood markers contributing to systemic inflammation pathway (TNFα (pg/mL), IL-6 (pg/mL), IL-10 (pg/mL), IFNᵞ (pg/mL), C-Reactive Protein (pg/mL), Zonulin (Haptoglobulin)(pg/m), IL-1β(pg/mL)).

    Time frame: 6 weeks

    Change in circulating markers of inflammation measured by ELISAs in serum samples collected pre and post the 6-weeks intervention period.

Secondary outcomes

  1. Change in BMI (kg/m²)

    Time frame: 6 weeks

    Changes in BMI pre and post the 6-weeks intervention period.

  2. Assessment of changes in general metabolic indicators, such as fasting blood glucose and other blood-based markers relevant to MASLD (e.g., CK18-M30, CK18-M65, PROC3, Enhanced Liver Fibrosis (ELF), NIS2+™, YKL-40, microRNA miR-34a-5p)

    Time frame: 6 weeks

    Changes in general metabolic indicators, such as fasting blood glucose and other blood-based markers relevant to MASLD (e.g., CK18-M30, CK18-M65, PROC3, Enhanced Liver Fibrosis (ELF), NIS2+™, YKL-40, microRNA miR-34a-5p) pre and post the 6-weeks intervention period.

  3. Assessment of changes in liver-associated enzymes such as Alanine Aminotransferase (ALT), Aspartate Aminotransferase (AST), gamma-glutamyl transferase (GGT), Alkaline Phosphatase (ALP)), bilirubin levels, lipid profiles, and platelet counts.

    Time frame: 6 weeks

    Changes in liver-associated enzymes such as Alanine Aminotransferase (ALT), Aspartate Aminotransferase (AST), gamma-glutamyl transferase (GGT), Alkaline Phosphatase (ALP)), bilirubin levels, lipid profiles, and platelet counts pre and post the 6-weeks intervention period.

  4. Change in Liver Stiffness via Transient Elastography

    Time frame: 6 weeks

    CAP and liver stiffness (in kPa) measured using transient elastography.

  5. Change in Liver Fat Fraction Assessed by Dixon MRI Sequence.

    Time frame: 6 weeks

    Fat fraction (%) in liver and abdominal organs assessed using Dixon MRI before and after the 6-week intervention.

  6. Change in Intestinal Permeability Measured by T2* MRI.

    Time frame: 6 weeks

    T2* values in gut wall tissue will be compared before and after the intervention as a proxy for gut permeability.

  7. Investigation the presence of gene variants such as MUC2, encoding Mucin protein, that are associated with gut permeability.

    Time frame: 6 weeks

    Genetic variants such as MUC2 will be determined where consent for genetic analysis is given.

  8. Change in Systolic Blood Pressure (mmHg)

    Time frame: 6 weeks

    Change in Systolic Blood Pressure (mmHg) before and after the 6-week intervention.

  9. Change in Diastolic Blood Pressure (mmHg)

    Time frame: 6 weeks

    Change in Diastolic Blood Pressure (mmHg) before and after the 6-week intervention.

  10. Change in Heart Rate (beats/minute)

    Time frame: 6 weeks

    Change in Heart Rate (beats/minute) before and after the 6-week intervention.

  11. Change in Waist-to-Hip Ratio

    Time frame: 6 weeks

    Change in Waist-to-Hip Ratio before and after the 6-week intervention.

Study contacts

Contact information is provided by the study sponsor or research team.

Guruprasad P Aithal, Professor

CONTACT

[email protected]

0044 01158231149

Noor K Al-Tameemi, PhD student candidate

CONTACT

[email protected]

0044 01158231149

Sponsors and collaborators

Lead sponsor

University of Nottingham

Other

Collaborators

  • Nottingham University Hospitals NHS Trust

Registry information

Official study title

The Impact of Pectin Supplementation on Systematic Inflammation Pathway, Gut Microbiome, and Metabolic Health in Patients With Metabolic Dysfunction-Associated Steatotic Liver Disease (MASLD): A Randomised, Placebo-Controlled, Dietary Intervention Study

Acronym: PEC-MASLD

Important dates

Study start
2025
Primary completion
2027
Study completion
2027
First posted
Jul 30, 2025
Registry last updated
Jul 30, 2025

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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