KBN2201 Attenuates High-Fat Diet-Induced Adipose Tissue Expansion and Body Weight Gain in Male Mice
Moonhang Kim1, Jeong-Hyeon Heo2,3,4, Seok-Hwan Chang1
1Efficacy Test Center for Mental & Behavioral Disorders, Ajou University Hospital, Suwon 16499, Republic of Korea.
Abstract:
Obesity is characterized by pathological adipose tissue expansion and dysregulated energy homeostasis. In this study, we examined whether KBN2201 attenuates high-fat diet (HFD)-induced obesity-associated phenotypes and whether these effects are accompanied by changes in appetite-regulatory markers. C57BL/6J mice were fed a normal chow diet or HFD and orally administered vehicle or KBN2201 (20 mg/kg/day) for 12 weeks. In male mice, KBN2201 reduced HFD-induced body weight gain, adipose tissue accumulation, and adipocyte hypertrophy. KBN2201 was also associated with lower cage-level caloric intake under HFD-fed conditions. In epididymal white adipose tissue (eWAT), KBN2201 suppressed Srebf1 expression and reduced HFD-induced increases in Tnf and Tgfb1 expression. In the colon, KBN2201 further increased Pyy mRNA expression, and a positive mRNA-level association was observed between colonic Pyy and Npy2r expression in NTS-containing brainstem tissue. Behavioral analyses provided no evidence of overt locomotor suppression under the present experimental conditions. These findings suggest that KBN2201 attenuates HFD-induced obesity-associated phenotypes in male mice, accompanied by a lower cage-level food intake pattern, reduced adipose tissue expansion, and changes in the expression of colonic Pyy and NTS-containing brainstem Npy2r.

