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KBN2202 Suppresses Gonadal White Adipose Tissue Expansion in Female Mice Fed a High-Fat Diet
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 treatments increasingly target multiple pathways beyond appetite suppression. We evaluated KBN2202, a salicylate-derived small molecule, in a high-fat diet (60% kcal from fat) mouse model using female and male C57BL/6J mice treated for 8 weeks with oral KBN2202 (20 mg/kg/day) or a matched-volume vehicle (1% DMSO/PBS). Body weight was recorded weekly, and food intake was measured daily; serum hormones and cytokines, adipose tissue histology, and open-field behavior were assessed at the end of the study. Under our experimental conditions, HFD increased body weight and gonadal white adipose tissue (gWAT)/brown adipose tissue (BAT) mass in females, whereas males showed only modest HFD-associated weight gain and did not develop a clear obesity phenotype. KBN2202 significantly reduced peri-ovarian gWAT mass and adipocyte size without altering overall body weight. In females, circulating glucagon-like peptide-1 (GLP-1) increased, uncoupling protein 1 (UCP1) in gWAT showed a non-significant upward trend, and serum TNF-α was selectively decreased, while MCP-1 and IL-1β were unchanged. Locomotor activity was unaltered, and anxiety-like behavior was reduced. Male mice did not show comparable adipose effects. These findings indicate depot-specific, peripheral modulation of adipose remodeling, hormonal balance, and inflammatory tone by KBN2202, supporting its further investigation as an adipose-targeted metabolic modulator complementary to incretin-based therapies.
Insights
KBN2202, a novel molecule, reduced fat tissue in female mice without affecting body weight. It also improved metabolic markers and reduced anxiety, suggesting potential as an adipose-targeted therapy.
Area of Science:
- Metabolic research
- Pharmacology
- Obesity research
Background:
- Obesity treatments are expanding beyond appetite suppression to target multiple metabolic pathways.
- Salicylate-derived small molecules represent a potential therapeutic avenue for metabolic disorders.
Purpose of the Study:
- To evaluate the efficacy of KBN2202, a salicylate-derived small molecule, in a high-fat diet-induced obesity mouse model.
- To assess KBN2202's effects on body weight, adipose tissue, hormonal balance, and behavior in female and male mice.
Main Methods:
- Female and male C57BL/6J mice were fed a high-fat diet for 8 weeks and treated with KBN2202 (20 mg/kg/day) or vehicle.
- Body weight, food intake, serum hormones/cytokines, adipose tissue histology, and open-field behavior were analyzed.
Main Results:
- KBN2202 significantly reduced peri-ovarian white adipose tissue mass and adipocyte size in females without altering body weight.
- In females, KBN2202 increased circulating glucagon-like peptide-1 (GLP-1) and selectively decreased serum TNF-α.
- Anxiety-like behavior was reduced in KBN2202-treated females; males did not exhibit comparable adipose effects.
Conclusions:
- KBN2202 demonstrates depot-specific modulation of adipose tissue, hormonal balance, and inflammation in female mice.
- These findings support KBN2202 as a potential adipose-targeted metabolic modulator, complementary to existing therapies.
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