The liver is the powerhouse of the body, overseeing many functions such as the production of clotting factors, sugars, fats, and the metabolism of drugs. MASLD is the most common chronic liver disease worldwide, affecting one in three adults and one in ten children. MASLD, more commonly referred to as "fatty liver," can lead to fat accumulation in liver cells or steatosis and is strongly associated with obesity and diabetes. The disease is usually considered a silent condition with few symptoms until advanced liver disease or cirrhosis develops. Fortunately, fatty liver may be reversed by adopting a healthy lifestyle, including weight loss and exercise. However, the pathogenesis of MASLD remains incompletely understood, and the Hispanic subpopulation is affected the most.
A multi-hit model has been proposed that most accurately describes both the development of simple steatosis and its transition from simple steatosis to progressive stages of the disease. In this model, a close interaction between dietary, environmental, and genetic factors with insulin resistance, lipotoxicity, and fat metabolism comprises multiple insults acting together on predisposed subjects to induce MASLD. This model has led to the understanding that the interplay between diet, genetics, and gut microbiota is of utmost importance in the development and progression of the condition. As a multi-factorial disease, assigning specific disease pathways to the overall phenotype has been challenging. Still, it is important to investigate associations between its risk factors to direct therapeutic interventions to the most relevant pathways.
Looking at two of the most relevant risk factors, this study aims to investigate whether there are any differences in the taxonomic composition of the gut microbiota between Hispanic patients with MASLD with different PNPLA3 genotypes. The PNPLA3 (patatin-like phospholipase domain-containing protein 3) polymorphism has been implicated in the pathogenesis and progression of the condition. However, the role of PNPLA3 polymorphism in shaping the fecal microbiota composition in Hispanic patients with MASLD remains unclear. Once fecal and blood samples are collected from a cohort of Hispanic individuals with MASLD, fecal microbiota sequencing and PNPLA3 genotyping will be done. Findings will reveal whether there are significant alterations in the fecal microbiota composition in relation to PNPLA3 polymorphism in Hispanic patients with MASLD. Results could provide evidence for a potential link between PNPLA3 polymorphism and fecal microbiota composition in Hispanic individuals with MASLD.