Multimorbidity comes to roost: insights from the LiverScreen project on the future burden of metabolic liver disease
COMMENTARY
Chronic liver disease, for the most part, is minimally symptomatic until the complications of advanced fibrosis and cirrhosis supervene, such as the development of ascites, hepatic encephalopathy, spontaneous bacterial peritonitis, or variceal bleeding[1]. Hepatocellular carcinoma, on the other hand, while typically developing in the context of cirrhosis, can also arise at earlier stages. The window to effectively intervene and reverse or prevent adverse liver outcomes is usually wide in the absence of cirrhosis, while these opportunities rapidly dwindle and therapy is less effective with the advent of cirrhosis[1]. Against this dynamic, determining a suitable screening program and the institution of appropriate therapy offers the best hope to prevent long-term adverse liver outcomes, akin to what is done for cardiovascular disease prevention. The starting point of any such strategy is to first understand the prevalence of the condition, i.e., liver fibrosis in this instance, in the general population.
The LiverScreen project[2] sought to answer this question by providing population-level insights on the prevalence of liver fibrosis across 9 European countries and
So, what are the implications of this study? Clearly, if you undertake population-level screening, chronic liver disease with suspected significant fibrosis (LSM ≥ 8 kPa) in those 40 years of age or older is about 1 in 20 persons. While as clinicians, the institution of early treatment is important, we must also be cognizant that the absolute risk of adverse liver outcomes is not large, especially when faced with competing health priorities. To highlight this issue, Allen et al. (2022) evaluated the course of non-alcoholic fatty liver disease (NAFLD), demonstrating that progression from NAFLD to cirrhosis was just 3% at 15 years, with decompensation occurring at approximately 8% per year in those with cirrhosis[4]. Of note, liver-related mortality was 6% over 15 years, with 94% of deaths occurring from diseases outside the liver. Another study by Vilar-Gomez et al. (2018) also highlighted the complication rates associated with NAFLD[5]. In that study, individuals with F3 fibrosis were more likely to have non-hepatic complications such as extrahepatic cancer and vascular events. Perhaps the goal in primary care is to identify and treat cardiovascular risk factors and undertake guideline-recommended cancer surveillance. For the Hepatologist, particularly if drugs that treat F2/3 fibrosis such as resmetirom or glucagon-like peptide-1 (GLP1) receptor agonists improve long-term liver-related outcomes rather than the histological outcomes that are currently reported, screening for those who would benefit from treatment, perhaps those with VCTE LSM ≥ 10 kPa as the current international guidelines recommend, is justified[6].
One of the major findings from LiverScreen was confirmation of what previous studies had suggested, namely that the presence of metabolic multi-morbidity and harmful alcohol use increases the risk of significant fibrosis. In LiverScreen, the prevalence of LSM ≥ 8 kPa increased stepwise from 1.3% to 2.2%, 5.2%, 9.4%, and 20.7% with 0, 1, 2, 3, or 4 metabolic risk factors, and to 37.1% in those with 4 metabolic risk factors and harmful alcohol use[2]. The message is clear: in the era of metabolic multimorbidity, these are the individuals at highest risk not just for liver and cardiometabolic outcomes, but also for hepatic and extrahepatic cancers and for a disproportionate burden of healthcare costs. Intensive case finding and aggressive management from lifestyle intervention, including dietary and exercise changes to pharmacotherapy, is perhaps the singular message.
A finding from LiverScreen was that the rates of VCTE LSM scores decreased on repeated testing. Almost half of the individuals referred to hepatology (48%) due to VCTE ≥ 8 kPa or raised ALT had a repeat VCTE
While LiverScreen has provided robust population-level data, as always, it is important to recognise its limitations. Many of these are inescapable in a study of this size, including missing data, variability in data acquisition tools, mixed entry criteria that varied from health check-up attendees to true population sampling to those that participated in existing population screening programmes or occupational health checks, and absence of protocolised testing for viral hepatitis. Further, the results are only applicable to adults restricted by the demographic characteristics of the study. Nevertheless, what is evident is that while suspected significant liver fibrosis (> 8 kPa LSM on VCTE) is largely asymptomatic, it affects nearly 5% of the adult population, which is likely of a similar order in most developed and developing countries.
LiverScreen has been a massive undertaking, and the results put numbers to population-level estimates of liver fibrosis as judged by VCTE. More than ever, for the authors of this commentary, the project highlights the adverse effects of metabolic multi-morbidity for human health, and targeted screening in primary care of these individuals will improve the recognition of suspected liver fibrosis in the general community. For hepatology practice, should treatments targeting metabolic liver disease be shown to reduce long-term adverse liver outcomes, the race will be on to identify and treat those most likely to benefit.
DECLARATIONS
Authors’ contributions
Made substantial contributions to the conception and design of the study and performed data analysis and interpretation: Gofton C, George J
Availability of data and materials
Not applicable.
AI and AI-assisted tools statement
Not applicable.
Financial support and sponsorship
George J is supported by the Robert W. Storr Bequest to the Sydney Medical Foundation, University of Sydney; a National Health and Medical Research Council of Australia (NHMRC) Program Grant (GNT1053206), Project, Ideas and Investigator grants (GNT2001692, GNT1107178, GNT1108422, GNT1196492 and GNT2032407) and a Cancer Institute, NSW grant (2021/ATRG2028).
Conflicts of interest
Both authors declared that there are no conflicts of interest.
Ethical approval and consent to participate
Not applicable.
Consent for publication
Not applicable.
Copyright
© The Author(s) 2026.
REFERENCES
1. Liu YB, Chen MK. Epidemiology of liver cirrhosis and associated complications: Current knowledge and future directions. World J Gastroenterol. 2022;28:5910-30.
2. Graupera I, Thiele M, Castera L, et al. ; LiverScreen Consortium Investigators. Prevalence of liver fibrosis in the general population (the LiverScreen project): a multinational European cohort study. Lancet. 2026;407:1448-58.
3. Graupera I, Thiele M, Ma AT, et al. ; LiverScreen Consortium investigators. LiverScreen project: study protocol for screening for liver fibrosis in the general population in European countries. BMC Public Health. 2022;22:1385.
4. Allen AM, Therneau TM, Ahmed OT, et al. Clinical course of non-alcoholic fatty liver disease and the implications for clinical trial design. J Hepatol. 2022;77:1237-45.
5. Vilar-Gomez E, Calzadilla-Bertot L, Wai-Sun Wong V, et al. Fibrosis severity as a determinant of cause-specific mortality in patients with advanced nonalcoholic fatty liver disease: a multi-national cohort study. Gastroenterology. 2018;155:443-57.e17.
6. European Association for the Study of the Liver (EASL), European Association for the Study of Diabetes (EASD), European Association for the Study of Obesity (EASO). EASL-EASD-EASO Clinical Practice Guidelines on the management of metabolic dysfunction-associated steatotic liver disease (MASLD). J Hepatol. 2024;81:492-542.
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