Skip to main content
Clinical Trials/NCT06124261
NCT06124261RecruitingNot Applicable

Androgens and Nonalcoholic Fatty Liver Disease (NAFLD) In Reproductive-Aged Women With and Without Polycystic Ovary Syndrome (PCOS)

University of California, San Francisco2 sites in 1 country150 target enrollmentStarted: January 22, 2024Last updated:
Conditions

Trial Snapshot

Phase
Not Applicable
Status
Recruiting
Enrollment
150
Locations
2
Primary Endpoint
Liver Stiffness Change

Study Overview

Brief Summary

The researchers want to learn how androgens, a type of sex hormone, might affect nonalcoholic fatty liver (NAFLD) in young women over time. NAFLD happens when fat builds up in the liver which can cause damage to the liver such as inflammation or scarring.

Young women with a condition called polycystic ovary syndrome (PCOS) have a high risk for NAFLD, and they often have high androgen levels too. So the researchers are recruiting young women with PCOS as well as those without PCOS, and will compare changes in NAFLD over time between young women with and without PCOS.

This study is funded by the National Institutes of Health

Detailed Description

The studies central hypothesis is that androgens promote liver injury and NAFLD/NASH progression in PCOS, which occurs through aberrant lipid activity (including lipotoxicity and dysregulated de novo lipogenesis), in part from androgenic effects on visceral adipose tissue (VAT). Data in young women taking exogenous testosterone show redistribution of fat from subcutaneous to visceral stores In the general population, VAT promotes NASH through several established pathways, including production of tissue injurious or "lipotoxic" lipids such as some phospholipid, sphingomyelin, and ceramide species. Recent data show androgen- associated increase in serum glycerophospholipids in women with PCOS, a lipid class that is associated with NASH in women. Additionally, androgen-associated de novo lipogenesis (DNL) may contribute to NASH in women. Hepatic DNL is a key source of lipid accumulation, and co-investigators at Duke University recently discovered an enzymatic balance that regulates hepatic DNL with dysregulation of this pathway (reflected by branched-chain keto and amino acids) predictive of prevalent NASH in humans. Androgen-induced de novo lipogenesis also occurs in cultured hepatocytes from women (but not men) supporting the researchers focused evaluation of the relationship between androgens, dysregulated hepatic DNL, and NASH in PCOS.

As existing data support androgenic effects on hepatic and visceral fat in women, the researchers will now determine the relationship of androgens with liver injury and progression in PCOS and the potential mechanistic contributions of VAT and aberrant lipid metabolism to this process. The team includes clinical and translational researchers at two centers (UCSF and Duke) with expertise in NAFLD, PCOS, obesity, and lipid metabolism, with a track record of collaboration. The study team will leverage an existing well-characterized PCOS cohort29 to follow 150 reproductive-aged women with NASH (125 PCOS and 25 non-PCOS controls) to accomplish this.

Study Design

Study Type
Observational
Observational Model
Case Control
Time Perspective
Prospective

Eligibility Criteria

Ages
18 Years to 42 Years (Adult)
Sex
Female
Accepts Healthy Volunteers
No

Inclusion Criteria

  • Metabolic associated steatohepatitis (MASH) (formerly NASH)

Exclusion Criteria

  • High levels of alcohol use (more than 7 drinks a week)
  • Current pregnancy
  • Other causes of hepatic steatosis
  • Weight loss of more than 10% body weight in the last 6 months

Arms & Interventions

MASLD and PCOS hyperandrogenism

Patients with MASLD and PCOS with the phenotype of hyperandrogenism

MASLD and PCOS non-hyperandrogenism

Patients with MASLD and PCOS with the phenotype of non-hyperandrogenism

MASLD and no-PCOS

Patients with metabolic dysfunction-associated steatotic liver disease (MASLD) and no PCOS

Outcomes

Primary Outcomes

Liver Stiffness Change

Time Frame: from baseline to Year 3 follow- up.

Mean change in liver stiffness (kPA) on magnetic resonance elastography (MRE)

Visceral Adipose Tissue (VAT) association to MASH severity

Time Frame: at baseline

VAT volume (cm3) will be determined on magnetic resonance electrography (MRE)

Secondary Outcomes

  • Liver stiffness severity(at baseline)

Investigators

Sponsor Class
Other
Responsible Party
Sponsor

Study Sites (2)

Loading locations...

Similar Trials