子宫内膜异位症
医学
封锁
不育
不利影响
受体
瘦素
二甲双胍
生物信息学
药理学
小鼠苗条素受体
内科学
疾病
雌激素受体
药品
内分泌学
三苯氧胺
治疗方法
药物输送
雌激素
选择性雌激素受体调节剂
癌症研究
治疗效果
肿瘤科
月经周期
靶向治疗
激素
内分泌系统
脂质体
卵泡期
作者
Yi Xu,Youyan Fang,Yue Wang,Rong Wu,Mengni Zhou,Pengcheng Lu,Ying Wang,Y U E J I He,Jiqian Zhang,Zhaolian Wei,Shasha Zhu
出处
期刊:ACS Nano
[American Chemical Society]
日期:2026-04-29
卷期号:20 (18): 13542-13559
标识
DOI:10.1021/acsnano.5c18417
摘要
Endometriosis is a common, estrogen-driven chronic gynecologic disorder defined by the ectopic growth of endometrial-like tissue within the peritoneal cavity. Existing treatment options, primarily surgery and hormonal therapy, are limited by inconsistent efficacy and treatment-related adverse effects. A major challenge in developing effective therapies is the lack of drug delivery strategies that specifically target ectopic lesions. In this study, we demonstrate through clinical analyses that the leptin receptor (LEPR) is strongly associated with endometriosis and that its expression is independent of age, menstrual cycle phase, pelvic pain, infertility history, and disease stage. Leveraging this insight, we designed a liposomal delivery platform (HLipo) modified with the HY7 peptide to target LEPR, enabling highly specific delivery to ectopic lesions in a mouse model. Notably, LEPR blockade or mutation abolished this lesion-specific accumulation, further supporting the LEPR-dependent targeting of HLipo. Building on this platform, we developed Met@HLipo, a metformin-loaded formulation that exhibited markedly superior antiendometriotic efficacy compared with free metformin, without detectable toxicity. Mechanistically, our study identifies a therapeutic mechanism whereby Met@HLipo induces autophagy-mediated degradation of estrogen receptor β (ERβ), thereby directly targeting a central driver of endometriosis pathogenesis. These findings highlight a clinically validated molecular target and present a highly translational, nonhormonal, and nonsurgical therapeutic strategy for endometriosis.
科研通智能强力驱动
Strongly Powered by AbleSci AI