脂肪组织
罗格列酮
医学
兴奋剂
炎症
巨噬细胞极化
赛马鲁肽
内分泌学
药理学
脂肪生成
内科学
脂肪生成
阿巴塔克普
受体
肥胖
2型糖尿病
体重增加
胰高血糖素样肽1受体
脂肪组织巨噬细胞
免疫系统
白细胞介素10
白藜芦醇
自噬
减肥
作者
Weiqin Yao,Jiawen Wang,Xuan Zeng,Weihai Chen,Xianzheng Zhang
出处
期刊:Nano Research
[Springer Science+Business Media]
日期:2026-05-20
卷期号:19 (9): 94908852-94908852
标识
DOI:10.26599/nr.2026.94908852
摘要
Abstract Current clinical management of obesity relies primarily on glucagon-like peptide-1 (GLP-1) receptor agonists or peroxisome proliferator-activated receptor gamma (PPAR-γ) agonists. However, GLP-1 agonists often lead to weight regain after discontinuation, while PPAR-γ agonist efficacy is limited by the pro-inflammatory adipose microenvironment. Here, we report an adipose-targeted nanocomposite microneedle patch (LRSG-SG@MN) for obesity treatment via an immuno-metabolic modulation strategy based on the co-delivery of rosiglitazone and semaglutide. This platform leverages the intrinsic affinity of nano-lipid droplets for adipocytes to deliver rosiglitazone, thereby activating PPAR-γ signaling and initiating mitochondrial biogenesis. Concurrently, the sustained release of semaglutide reprograms the local immune microenvironment by driving macrophage polarization from pro-inflammatory M1 to anti-inflammatory M2 phenotypes. Mechanistically, this resolution of adipose inflammation alleviates the suppression of thermogenesis, creating a circuit that potentiates the browning effects of rosiglitazone. In high-fat diet-induced obese mice, this strategy demonstrated robust efficacy, significantly reducing adiposity and ameliorating glucolipid metabolic disorders. Notably, the system exhibited excellent weight maintenance capacity following treatment cessation without significant rebound, achieving efficient and durable anti-obesity outcomes. This study unveils the non-central immunomodulatory function of semaglutide and establishes an adipose-targeted, long-acting nanocomposite microneedle platform that achieves combined therapeutic outcomes through adipose tissue inflammatory reprogramming coupled with browning induction, offering a novel strategy for sustainable obesity management.
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