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地塞米松的脂质体包封可调节原代人巨噬细胞的细胞毒性、炎性细胞因子反应和迁移特性。

Liposomal encapsulation of dexamethasone modulates cytotoxicity, inflammatory cytokine response, and migratory properties of primary human macrophages.

作者信息

Bartneck Matthias, Peters Franziska Marie, Warzecha Klaudia Theresa, Bienert Michaela, van Bloois Louis, Trautwein Christian, Lammers Twan, Tacke Frank

机构信息

Department of Medicine III, Medical Faculty, RWTH University, Aachen, Germany.

Department of Medicine III, Medical Faculty, RWTH University, Aachen, Germany.

出版信息

Nanomedicine. 2014 Aug;10(6):1209-20. doi: 10.1016/j.nano.2014.02.011. Epub 2014 Mar 7.

Abstract

UNLABELLED

The encapsulation of drugs into liposomes aims to enhance their efficacy and reduce their toxicity. Corticosteroid-loaded liposomes are currently being evaluated in patients suffering from rheumatoid arthritis, atherosclerosis, colitis, and cancer. Here, using several different fluorophore-labeled formulations, we comprehensively studied the impact of liposome encapsulation of the prototypic corticosteroid dexamethasone on various primary human cells in vitro. Liposomal dexamethasone targeted several primary cell types in a dose and time-dependent manner, but specifically reduced cytotoxicity against human fibroblasts and macrophages in comparison to the solute drug. Furthermore, macrophage maturation and polarization markers were altered. Interestingly, liposomal dexamethasone induced proinflammatory cytokine secretion (specifically TNF, IL1β, IL6) in unstimulated cells, but reduced this response under inflammatory conditions. Monocyte and macrophage migration was significantly inhibited by dexamethasone-loaded liposomes. The findings indicate that the encapsulation of dexamethasone into liposomes modulates their cellular mechanism of action, and provides important indications for follow-up in vivo investigations.

FROM THE CLINICAL EDITOR

This study investigates mechanism of action of liposomal dexamethason in the treatment of inflammatory conditions. It is concluded that liposomal dexamethasone actually induces proinflammatory cytokine secretion in unstimulated cells, but reduces the same response under inflammatory conditions. Monocyte and macrophage migration was also inhibited. The findings indicate that liposomal dexamethasone may have different mechanisms of action than its native counterpart.

摘要

未标记

将药物包裹于脂质体中的目的是提高其疗效并降低其毒性。目前正在对患有类风湿性关节炎、动脉粥样硬化、结肠炎和癌症的患者评估载有皮质类固醇的脂质体。在此,我们使用几种不同的荧光团标记制剂,全面研究了原型皮质类固醇地塞米松的脂质体包裹对多种原代人细胞的体外影响。脂质体形式的地塞米松以剂量和时间依赖性方式靶向多种原代细胞类型,但与溶质药物相比,它能特异性降低对人成纤维细胞和巨噬细胞的细胞毒性。此外,巨噬细胞成熟和极化标志物也发生了改变。有趣的是,脂质体形式的地塞米松在未受刺激的细胞中诱导促炎细胞因子分泌(特别是肿瘤坏死因子、白细胞介素1β、白细胞介素6),但在炎症条件下会降低这种反应。载有地塞米松的脂质体显著抑制单核细胞和巨噬细胞迁移。这些发现表明,将地塞米松包裹于脂质体中可调节其细胞作用机制,并为后续的体内研究提供了重要线索。

临床编辑评论

本研究调查了脂质体形式的地塞米松在治疗炎症性疾病中的作用机制。得出的结论是,脂质体形式的地塞米松实际上在未受刺激的细胞中诱导促炎细胞因子分泌,但在炎症条件下会降低相同的反应。单核细胞和巨噬细胞迁移也受到抑制。这些发现表明,脂质体形式的地塞米松可能具有与其天然形式不同的作用机制。

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