Beneficial Effects of a Dual Cyclooxygenase Inhibitor−Thromboxane Antagonist in Counteracting High-Fat Diet-Induced Metaflammation
Giacomo Einaudi, Elisa Porchietto, Federica Blua, Debora Collotta, Eleonora Aimaretti, Francesca Boccato, Barbara Rolando, Elisabetta Marini, Raffaella Mastrocola, Maria Vittoria Micioni Di Bonaventura, Massimo Collino, Massimo Bertinaria, Gustavo Ferreira Alves, Carlo CifaniChronic low-grade inflammation (metaflammation) is a key contributor to obesity-associated metabolic disorders and their cardiovascular complications. This study investigated the effects of CXT29, a novel dual cyclooxygenase-2 (COX-2) inhibitor and thromboxane prostanoid receptor (TP) antagonist, in comparison with its parent compound etodolac, in a murine model of diet-induced metabolic dysfunction. Four-week-old male C57BL/6 mice were fed either a standard diet or a high-fat diet for 18 weeks and subsequently treated with etodolac (20 mg/kg/day) or CXT29 (25 mg/kg/day) by oral gavage for 5 weeks. High-fat-diet-fed mice developed increased body weight, impaired glucose tolerance, altered circulating metabolic hormones, liver dysfunction, steatosis, inflammatory cell infiltration, and systemic inflammation. Both treatments attenuated systemic inflammation and improved the metabolic alterations induced by the obesogenic diet. Notably, CXT29, but not etodolac, attenuated the increase in circulating plasminogen activator inhibitor-1 (PAI-1), a biomarker associated with cardiovascular risk. These findings indicate that pharmacological inhibition of COX-2 improves metabolic dysfunction associated with diet-induced obesity. Furthermore, the additional TP antagonism provided by CXT29 does not compromise the metabolic benefits associate with COX-2 inhibition, while displaying a distinct effect on circulating PAI-1, supporting further investigation of this dual-target approach in obesity-associated metabolic dysfunction.