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The Effects of 5-methyltetrahydrofolate Supplementation in Patients With Metabolic Dysfunction-Associated Steatotic Liver Disease (MASLD)

30. Juli 2026 aktualisiert von: Fatemeh Tamjid, Tabriz University of Medical Sciences

The Effect of 5-methyltetrahydrofolate Supplementation on Serum Folate and Homocysteine Level and PPARα and TNFα Gene Expression in Patients With Metabolic Dysfunction-Associated Steatotic Liver Disease: a Double-blind, Parallel Randomized Controlled Trial Study

To determine the effect of MTHF supplementation on serum folate and homocysteine level, metabolic, nutritional status, liver function, and PPARα and TNFα gene expression in patients with MASLD

Studienübersicht

Detaillierte Beschreibung

Metabolic dysfunction-associated steatotic liver disease (MASLD), formerly termed non-alcoholic fatty liver disease (NAFLD), is diagnosed via liver biopsy or imaging when steatosis is present in the absence of alcohol intake or other hepatic disorders. As the liver manifestation of metabolic syndrome, it commonly coexists with obesity, diabetes, dyslipidemia, hypertension, and related conditions. Global prevalence of MASLD continues to rise.

Evidence from an earlier systematic review and meta-analysis indicated that MASLD patients had significantly lower serum folate and higher homocysteine concentrations. Folate is an essential water-soluble B vitamin that occurs in multiple chemically related forms. Food folates are mainly reduced and polyglutamated, with 5-MTHF predominating in both the diet and systemic circulation. 5-MTHF does not require reduction by DHFR and can enter the bloodstream directly for use. Reduced folates act as methyl donors in one carbon metabolism, supporting cellular proliferation, homocysteine re-methylation to methionine, nucleic acid synthesis and methylation of DNA, RNA, proteins and phospholipids.

Experimental studies have demonstrated that diet-induced hyperhomocysteinemia promotes hepatic steatosis and liver injury and folate as a key regulator of homocysteine concentration, may exert hepatoprotective effects. Evidence suggests that folate may improve hepatic lipid metabolism by activating peroxisome proliferator-activated receptor alpha (PPARα) signaling and modulate the immune response and reduce inflammatory mediators. Nevertheless, no evidence on the effects of folate on PPARα and TNFα gene expression in MASLD patients exist. Moreover, PPARα gene expression is dysregulated in MASLD and related metabolic conditions; PPARα is highly expressed in the liver, skeletal muscle and brown adipose tissue, stimulates β-oxidation and suppresses fatty-acid synthesis. Although the effect of 5-MTHF supplementation on gene expression of PPARα and TNFα in MASLD patients has not been examined, evidence showed that folate can modulate PPARα and TNFα. As folate has been shown to affect lipid metabolism and inflammation, we hypothesized that 5-MTHF supplementation might regulate PPARα and TNFα expression in MASLD patients. This randomized, double-blind, placebo-controlled clinical trial will therefore be undertaken to determine the effects of 5-MTHF supplementation on serum levels of folate and homocysteine, and gene expression of PPARα and TNFα in MASLD patients.

Studientyp

Interventionell

Einschreibung (Geschätzt)

44

Phase

  • Unzutreffend

Kontakte und Standorte

Dieser Abschnitt enthält die Kontaktdaten derjenigen, die die Studie durchführen, und Informationen darüber, wo diese Studie durchgeführt wird.

Studienkontakt

Studieren Sie die Kontaktsicherung

Studienorte

Teilnahmekriterien

Forscher suchen nach Personen, die einer bestimmten Beschreibung entsprechen, die als Auswahlkriterien bezeichnet werden. Einige Beispiele für diese Kriterien sind der allgemeine Gesundheitszustand einer Person oder frühere Behandlungen.

Zulassungskriterien

Studienberechtigtes Alter

  • Erwachsene

Akzeptiert gesunde Freiwillige

Nein

Beschreibung

Inclusion Criteria:

  • Adult men or women (18-50 years)
  • Diagnosis of MASLD (grade 1 or 2 of steatosis confirmed by ultrasound)
  • Body mass index (BMI) = 25-34.9 kg/m²
  • Providing written informed consent

Exclusion Criteria:

  • Pregnancy, lactation, or plans to get pregnant during the next three months.
  • Liver disease (viral hepatitis, autoimmune liver disease, cirrhosis, drug-induced hepatotoxicity, or alcoholic fatty liver disease), heart or renal failure, kidney stones, any neoplasia, inflammatory disease, hypothyroidism, hypercortisolism, or hypertension
  • Taking drugs affecting glucose or lipid metabolism, folate supplements, anti-obesity medications, weight-loss diets, or dietary supplements
  • Lifestyle factors known to impact folate status (current smoking, alcohol intake, recreational drug use)
  • Pre-existing conditions affecting folate status (malabsorptive or inflammatory bowel diseases, active celiac disease, gastric bypass surgery, atrophic gastritis, epilepsy, advanced liver disease, kidney dialysis, type 1 or 2 diabetes mellitus, or sickle cell trait/anemia)
  • Medications that interfere with B-vitamin metabolism (chloramphenicol, methotrexate, metformin, sulfasalazine, phenobarbital, phenytoin, primidone, triamterene, barbiturates)

Studienplan

Dieser Abschnitt enthält Einzelheiten zum Studienplan, einschließlich des Studiendesigns und der Messung der Studieninhalte.

Wie ist die Studie aufgebaut?

Designdetails

  • Hauptzweck: Behandlung
  • Zuteilung: Zufällig
  • Interventionsmodell: Parallele Zuordnung
  • Maskierung: Vervierfachen

Waffen und Interventionen

Teilnehmergruppe / Arm
Intervention / Behandlung
Placebo-Komparator: Placebo
Patients in this group will receive placebo for 90 days. The placebo is corn starch/ cellulose and will be consumed once a day. Placebo tablets will be manufactured by Ashbal Chemi Co. (Tehran, Iran).
Experimental: Intervention
Patients in this group will receive 5-methyltetrahydrofolate tablets (800 mcg) once a day for 90 days. Tablets will be manufactured by Ashbal Chemi pharmaceutical company (Qfol, Ashbal Chemi Co., Tehran, Iran).

Was misst die Studie?

Primäre Ergebnismessungen

Ergebnis Maßnahme
Maßnahmenbeschreibung
Zeitfenster
Serum folate level
Zeitfenster: 3 months
Changes in serum folate level pre and post the 3-month intervention period.
3 months
Serum homocysteine level
Zeitfenster: 3 months
Changes in serum homocysteine level pre and post the 3-month intervention period.
3 months
Expression of PPARα and TNFα genes
Zeitfenster: 3 months
Changes in expression of PPARα and TNFα genes pre and post the 3-month intervention period.
3 months

Sekundäre Ergebnismessungen

Ergebnis Maßnahme
Maßnahmenbeschreibung
Zeitfenster
Liver biochemical parameters (ALT (alanine aminotransferase), AST (aspartate aminotransferase), and GGT (gamma-glutamyl transferase)
Zeitfenster: 3 months
Changes in ALT, AST, and GGT pre and post the 3-month intervention period.
3 months
The fibrosis-4 (FIB-4) index
Zeitfenster: 3 months
Changes in FIB-4 index pre and post the 3-month intervention period. The Fibrosis-4 (FIB-4) index will be calculated using the following formula: FIB-4 = (Age [years] × AST [U/L]) / (Platelet count [10⁹/L] × √ALT [U/L]). FIB-4 values >1.3, indicate a greater likelihood of liver fibrosis.
3 months
Quality of life using SF-36 (36-Item Short Form Health Survey) questionnaires
Zeitfenster: 3 months
Changes in quality-of-life pre and post the 3-month intervention period. Health-related quality of life will be assessed using the validated 36-Item Short Form Health Survey (SF-36). The questionnaire evaluates eight health domains: physical functioning, role limitations due to physical health, bodily pain, general health, vitality, social functioning, role limitations due to emotional problems, and mental health. Scores for each domain will be transformed to a 0-100 scale according to the standard scoring algorithm, with higher scores indicating better health-related quality of life.
3 months
Lipid profile (triglycerides, total cholesterol, LDL-C (low-density lipoprotein cholesterol), HDL-C (high-density lipoprotein cholesterol))
Zeitfenster: 3 monhs
Changes in lipid profile (triglycerides, total cholesterol, LDL-C, HDL-C) pre and post the 3-month intervention period.
3 monhs
Fasting blood glucose
Zeitfenster: 3 months
Changes in fasting blood glucose pre and post the 3-month intervention period.
3 months
Fasting serum insulin
Zeitfenster: 3 months
Changes in fasting serum insulin pre and post the 3-month intervention period.
3 months
QUICKI (quantitative insulin sensitivity check index)
Zeitfenster: 3 months
Changes in QUICKI pre and post the 3-month intervention period. The quantitative insulin sensitivity check index (QUICKI) will be calculated as 1/[log(fasting insulin [µU/mL]) + log(fasting glucose [mg/dL])], higher values indicating greater insulin sensitivity.
3 months
HOMA-IR (homeostatic model assessment of insulin resistance
Zeitfenster: 3 months
Changes in HOMA-IR pre and post the 3-month intervention period. Insulin resistance will be assessed using the homeostatic model assessment of insulin resistance (HOMA-IR), calculated as fasting insulin (µU/mL) × fasting glucose (mg/dL) / 405, higher values indicating greater insulin resistance.
3 months
Weight
Zeitfenster: 3 months
Changes in weight pre and post the 3-month intervention period.
3 months
Body Mass Index (BMI)
Zeitfenster: 3 months
Changes in BMI pre and post the 3-month intervention period. Body mass index (BMI) will be calculated as weight (kg) divided by the square of height (m²) and expressed as kg/m².
3 months
Waist circumference
Zeitfenster: 3 months
Changes in waist circumference pre and post the 3-month intervention period.
3 months
Waist-to-hip ratio (WHR)
Zeitfenster: 3 months
Changes in WHR pre and post the 3-month intervention period. Waist-to-hip ratio (WHR) will be calculated by dividing waist circumference by hip circumference.
3 months
Body composition (fat-free mass)
Zeitfenster: 3 months
Changes in fat-free mass (%) pre and post the 3-month intervention period. Body composition will be determined using a bioelectrical impedance analyzer.
3 months
Body composition (fat mass)
Zeitfenster: 3 months
Changes in fat mass (%) pre and post the 3-month intervention period. Body composition will be determined using a bioelectrical impedance analyzer.
3 months

Mitarbeiter und Ermittler

Hier finden Sie Personen und Organisationen, die an dieser Studie beteiligt sind.

Ermittler

  • Hauptermittler: Bahram Pourghassem Gargari, Tabriz University of Medical Sciences

Studienaufzeichnungsdaten

Diese Daten verfolgen den Fortschritt der Übermittlung von Studienaufzeichnungen und zusammenfassenden Ergebnissen an ClinicalTrials.gov. Studienaufzeichnungen und gemeldete Ergebnisse werden von der National Library of Medicine (NLM) überprüft, um sicherzustellen, dass sie bestimmten Qualitätskontrollstandards entsprechen, bevor sie auf der öffentlichen Website veröffentlicht werden.

Haupttermine studieren

Studienbeginn (Geschätzt)

30. September 2026

Primärer Abschluss (Geschätzt)

30. August 2027

Studienabschluss (Geschätzt)

30. August 2027

Studienanmeldedaten

Zuerst eingereicht

22. Juli 2026

Zuerst eingereicht, das die QC-Kriterien erfüllt hat

30. Juli 2026

Zuerst gepostet (Tatsächlich)

31. Juli 2026

Studienaufzeichnungsaktualisierungen

Letztes Update gepostet (Tatsächlich)

31. Juli 2026

Letztes eingereichtes Update, das die QC-Kriterien erfüllt

30. Juli 2026

Zuletzt verifiziert

1. Juli 2026

Mehr Informationen

Begriffe im Zusammenhang mit dieser Studie

Plan für individuelle Teilnehmerdaten (IPD)

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JA

Arzneimittel- und Geräteinformationen, Studienunterlagen

Studiert ein von der US-amerikanischen FDA reguliertes Arzneimittelprodukt

Nein

Studiert ein von der US-amerikanischen FDA reguliertes Geräteprodukt

Nein

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