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MASLD linked to 35% higher odds of HFpEF in pooled analysis of 899,629 patientsLiver Disease Linked to Higher Risk of Heart Failure

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Key Takeaway
Consider cardiovascular screening in MASLD, but interpret the HFpEF link as hypothesis-generating.

This meta-analysis examined the association between metabolic dysfunction-associated steatotic liver disease (MASLD) and clinically diagnosed heart failure with preserved ejection fraction (HFpEF). It pooled 3 eligible studies comprising 899,629 total patients, of whom 47,610 had MASLD.

HFpEF prevalence was 2.2% in the MASLD group versus 1.85% in the non-MASLD group, corresponding to a pooled odds ratio of 1.35 (95% CI 1.26-1.45; p<0.0001) and an absolute risk increase of 0.35%. Advanced fibrosis was listed as a secondary outcome.

The authors describe the findings as hypothesis-generating and note that the association is with clinically diagnosed HFpEF. The certainty of evidence is limited by the small number of eligible studies (3). Follow-up duration, adverse events, and funding or conflicts of interest were not reported.

The results suggest that integrated cardiovascular screening may be considered for patients with MASLD, particularly those with advanced fibrosis, though the observational and hypothesis-generating nature of the evidence should temper clinical application.

How this fits prior evidence

Prior coverage has addressed MASLD risk factors and management, including the rs2896019 G allele associated with a 51% increased risk of MASLD susceptibility, and lifestyle interventions such as ketogenic diets, intermittent fasting, HIIT, and MICT for hepatic and metabolic parameters. This meta-analysis extends that literature by focusing on a cardiovascular comorbidity, HFpEF, rather than liver-related outcomes. It also complements prior coverage noting limited racial and ethnic diversity in MASLD trials, as the included studies' populations are not described in detail here.

A large review of data involving nearly 900,000 people looked at the link between liver health and heart health. The study specifically focused on patients with metabolic dysfunction-associated steatotic liver disease (MASLD) and compared them to people without the condition.

Researchers found that people with MASLD had a higher rate of heart failure with preserved ejection fraction (HFpEF) than those without the liver condition. Specifically, the prevalence was 2.2% in the MASLD group compared to 1.85% in the group without the condition. This finding suggests that liver health and heart health are closely connected.

Because this study is based on only three reports, the results are currently considered hypothesis-generating. This means the findings are early and do not prove that one condition causes the other. However, the results suggest that doctors may need to screen heart health more closely in patients with liver disease, especially those with advanced fibrosis.

What this means for you:
People with MASLD have a higher risk of heart failure, suggesting a need for closer heart monitoring.

Common questions

What is the link between liver disease and heart failure?

The study found that people with metabolic dysfunction-associated steatotic liver disease (MASLD) had a higher prevalence of heart failure with preserved ejection fraction (HFpEF). The rate was 2.2% in the MASLD group compared to 1.85% in the group without the liver condition.

Is this finding a proven cause of heart failure?

The study shows a link between the two conditions, but it does not prove that liver disease causes heart failure. Because the findings are considered hypothesis-generating and based on only three studies, they are not yet used to change standard medical practices.

Who is most at risk for these heart issues?

The data suggests that patients with MASLD may need more integrated cardiovascular screening. This is especially important for patients who also show signs of advanced fibrosis in their liver.

Study Details

Study typeMeta analysis
EvidenceLevel 1
PublishedSep 2026
View Original Abstract ↓
BACKGROUND: Metabolic dysfunction-associated steatotic liver disease (MASLD), previously termed non-alcoholic fatty liver disease (NAFLD), shares pathophysiological links with heart failure with preserved ejection fraction (HFpEF), but their clinical association remains underexplored. OBJECTIVE: This systematic review and meta-analysis evaluates the association between MASLD and clinically diagnosed HFpEF and trying to quantify the magnitude of this association across available clinical studies. METHODS: This review was registered on PROSPERO (CRD42025644064), we systematically searched PubMed, Embase, and Scopus (from inception to February 2025) for studies reporting clinical HFpEF prevalence in MASLD versus non-MASLD cohorts, using the following search terms: ("metabolic associated fatty liver disease" OR "MAFLD" OR "metabolic dysfunction associated steatotic liver disease" OR "MASLD" OR "non-alcoholic fatty liver disease" OR "NAFLD") AND ("heart failure with preserved ejection fraction" OR "HFpEF" OR "diastolic heart failure" OR "preserved ejection fraction") Pooled odds ratios (ORs) and 95% confidence intervals (CIs) were calculated in R using "Meta" package by both Mantel-Haenszel (common effects) and Inverse variance (random effects) methods. Risk of bias was assessed using the Joanna Briggs Institute (JBI) critical appraisal tools for observational studies. RESULTS: We identified 3313 publications from electronic and hand-searches, two reviewers independently screened studies and extracted data following PRISMA guidelines. After excluding studies failing to meet our inclusion criteria of comparing MASLD vs. non-MASLD regarding the occurrence/prevalence of HFpEF as a clinical diagnosis, and duplicates,123 full-text studies were assessed for eligibility, of these, 3 studies (n = 899,629; 47,610 MASLD patients), two cohorts-studies and one cross-sectional study were included in the analysis. The HFpEF prevalence was 2.2% among the MASLD group versus1.85% in the non-MASLD group. MASLD was significantly associated with increased HFpEF risk (pooled OR 1.35, 95% CI 1.26-1.45; *p*<0.0001), representing an absolute risk increase of 0.35%. Statistical heterogeneity was negligible across studies (I² = 0.0%, τ² = 0, Q = 0.90, p = 0.6365). CONCLUSION: Based on evidence base of three eligible studies, MASLD appears to independently increase the risk of clinically diagnosed HFpEF by 35%, with advanced fibrosis conferring additional risk; these findings should be regarded as hypothesis-generating. These finding support implementing integrated cardiovascular screening protocols in MASLD patients, particularly those with advanced fibrosis or metabolic comorbidities, and exploring therapeutic strategies targeting shared metabolic pathways (e.g., GLP-1 agonists) are warranted.
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