Obesity is a multifactorial chronic disease resulting from the interaction of genetic, hormonal, inflammatory, and microbial factors. While caloric imbalance contributes to its pathogenesis, pathways involving molecular mechanisms—such as leptin–melanocortin pathway dysfunction, adipokine dysregulation, and microbiota-induced inflammation—are also significant. Adipose tissue inflammation is characterized by macrophage infiltration, activation of MAPK and NF-κB pathways, and abnormal adipokine secretion, all of which lead to insulin resistance and metabolic dysfunction. Genetic factors, including mutations in the LEP, LEPR, POMC, and MC4R genes, can disrupt appetite regulation and predispose individuals to early-onset obesity. Syndromic forms of obesity, such as Prader–Willi and Bardet–Biedl syndromes, further highlight chromosomal influences. Hormonal imbalances, including those involving ghrelin, GLP-1, and CCK, also affect energy expenditure and appetite regulation. Additionally, gut dysbiosis contributes to systemic inflammation through increased levels of lipopolysaccharides (LPS) and decreased production of short-chain fatty acids, which maintain metabolic endotoxemia. These patterns of evidence underscore the need for integrative interventions targeting endocrine, inflammatory, and microbial pathways. Further research is required to clarify gene– microbiota–hormone interactions and to develop personalized therapeutic intervention.
Śliwiński et al. (2025) studied this question.