减肥
背景(考古学)
医学
内分泌学
内科学
敌手
受体
体重
肥胖
糖尿病
兴奋剂
2型糖尿病
小分子
B2受体
药理学
皮下脂肪
代谢综合征
脂肪垫
体重增加
重量变化
受体拮抗剂
表型
G蛋白偶联受体
胰岛素抵抗
作者
Yunxiao Zhang,Bo Zhu,Binhui Peng,Peng Wu,Guyu Zhong,Yongchen Wang,Zhaofeng Wang,Xinyu Feng,Dongfang Tang,Dezheng Peng,Yu Liu
摘要
BACKGROUND: The GLP-1 receptor (GLP-1R) and GIP receptor (GIPR) are key targets for diabetes and obesity therapies. Pharmacological agents including GLP-1R agonists (e.g., Semaglutide), dual GLP-1R/GIPR agonists (e.g., Tirzepatide) and a GLP-1R agonist/GIPR antagonist (AMG133) have demonstrated considerable promise in anti-diabetic and weight management applications. However, a systematic comparison of the specific contributions of GIPR activation versus GIPR inhibition to weight loss within the context of GLP-1/GIP dual-targeting therapies remains unexplored. RESEARCH DESIGN AND METHODS: To address this, we designed three IgG4 Fc-fusion proteins: a GLP-1R agonist/GIPR agonist, (i) GLP-1(A8G)/GIP(A2G)-Fc; a GLP-1R agonist/GIPR inhibitor, (ii) GLP-1(A8G)/GIP(3-30)-Fc; and a sequential molecule that hypothesised to transition from dual GLP-1R/GIPR agonism to GLP-1R agonism/GIPR inhibition, (iii) GLP-1(A8G)/GIP(1-30)-Fc. Mono-agonist GLP-1(A8G)-Fc and dual-agonist GLP-1(A8G)/GIP(A2G)-Fc were used as controls to investigate the weight loss effects of GIPR activation and inhibition in DIO mice. RESULTS: Our findings revealed that the sequential molecule GLP-1(A8G)/GIP(1-30)-Fc produced the greatest body weight reduction (21.59%), significantly outperforming GLP-1(A8G)/GIP(3-30)-Fc (14.5%; p < 0.001). Furthermore, both GIPR activation and inhibition, when combined with GLP-1R agonism, markedly improved serum and hepatic lipid metabolism, as evidenced by reduced triglycerides and total cholesterol. CONCLUSION: Together, these findings validate a peptide-based inhibitory strategy for synergistic weight loss and provide insights into the differential metabolic roles of GIPR activation versus inhibition, guiding the development of novel anti-obesity therapeutics.
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