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纳米氧化铈作为一种用于子宫内膜异位症诊疗的非甾体抗炎药。

Nanoceria as a non-steroidal anti-inflammatory drug for endometriosis theranostics.

作者信息

Rahman Md Saidur, Hadrick Kay, Chung Seock-Jin, Carley Ian, Yoo Jung-Yoon, Nahar Shamsun, Kim Tae Hoon, Kim Taeho, Jeong Jae-Wook

机构信息

Department of Obstetrics, Gynecology and Women's Health, University of Missouri School of Medicine, 1030 Hitt Street, Columbia, MO 65211, USA.

Department of Biomedical Engineering, Michigan State University, 775 Woodlot Dr, East Lansing, MI 48824, USA; Institute for Quantitative Health Science and Engineering, Michigan State University, 775 Woodlot Dr, East Lansing, MI 48824, USA.

出版信息

J Control Release. 2025 Feb 10;378:1015-1029. doi: 10.1016/j.jconrel.2024.12.074. Epub 2025 Jan 3.

Abstract

Endometriosis, the growth of endometrial-like tissue outside the uterus, causes chronic pain and infertility in 10 % of reproductive-aged women worldwide. Unfortunately, no permanent cure exists, and current medical and surgical treatments offer only temporary relief. Endometriosis is a chronic inflammatory disease characterized by immune system dysfunction. Our previous study showed aberrant activation of signal transducer and activator of transcription 3 (STAT3) in endometriosis. Our transcriptomic analysis of uterine tissue from uterine-specific Stat3 knock-out mice identifies that STAT3 regulates inflammatory and immune-related genes. Here, we evaluate cerium-oxide nanoparticles (nanoceria) as a non-steroidal anti-inflammatory drug for endometriosis theranostics. Our in vitro studies validate the multi-enzymatic properties of nanoceria, enabling the transition of pro-inflammatory macrophages to an anti-inflammatory state in J774 macrophage cells. In vivo, treatment of endometriosis mice with nanoceria reveals its ability to passively accumulate at ectopic lesions. The nanoceria conjugated with indocyanine green are non-invasively trackable to ectopic lesions. Therefore, immune modulation and anti-inflammatory effects of nanoceria significantly reduce development of ectopic lesions while minimizing off-target effects, such as avoiding interference with pregnancy including implantation and decidualization. Our results suggest that aberrant STAT3 activation is a major contributor to endometriosis, and nanoceria offers a novel theranostic approach for endometriosis.

摘要

子宫内膜异位症是指子宫外出现类似子宫内膜组织的生长,在全球10%的育龄妇女中会导致慢性疼痛和不孕。不幸的是,目前尚无永久性治愈方法,现有的药物和手术治疗仅能提供暂时缓解。子宫内膜异位症是一种以免疫系统功能障碍为特征的慢性炎症性疾病。我们之前的研究表明,子宫内膜异位症中信号转导和转录激活因子3(STAT3)存在异常激活。我们对子宫特异性Stat3基因敲除小鼠的子宫组织进行转录组分析,确定STAT3调控炎症和免疫相关基因。在此,我们评估氧化铈纳米颗粒(纳米氧化铈)作为一种用于子宫内膜异位症诊疗的非甾体抗炎药。我们的体外研究验证了纳米氧化铈的多酶特性,使其能够在J774巨噬细胞中将促炎巨噬细胞转变为抗炎状态。在体内,用纳米氧化铈治疗子宫内膜异位症小鼠发现其能够被动积聚在异位病灶处。与吲哚菁绿偶联的纳米氧化铈可通过非侵入性方式追踪到异位病灶。因此,纳米氧化铈的免疫调节和抗炎作用显著减少了异位病灶的发展,同时将脱靶效应降至最低,比如避免干扰包括着床和蜕膜化在内的妊娠过程。我们的研究结果表明,STAT3异常激活是子宫内膜异位症的主要促成因素,纳米氧化铈为子宫内膜异位症提供了一种新的诊疗方法。

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