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首页> 外文期刊>ACS nano >Dexamethasone Conjugation to Biodegradable Avidin-Nucleic-Acid-Nano-Assemblies Promotes Selective Liver Targeting and Improves Therapeutic Efficacy in an Autoimmune Hepatitis Murine Model
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Dexamethasone Conjugation to Biodegradable Avidin-Nucleic-Acid-Nano-Assemblies Promotes Selective Liver Targeting and Improves Therapeutic Efficacy in an Autoimmune Hepatitis Murine Model

机译:地塞米松与可生物降解的抗生物素核 - 核 - 酸纳米组件的缀合促进了选择性肝脏靶向并提高了自身免疫性肝炎小鼠模型中的治疗效果

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Steroids are the standard therapy for auto immune hepatitis (AIH) but the long-lasting administration is hampered by severe side effects. Methods to improve the tropism of the drug toward the liver are therefore required. Among them, conjugation to nano particles represents one possible strategy. In this study, we exploited the natural liver tropism of Avidin-Nucleic-Acid-Nano-Assemblies (ANANAS) to carry dexamethasone selectively to the liver in an AIH animal model. An acid labile biotin-hydrazone linker was developed for reversible dexamethasone loading onto ANANAS. The biodistribution, pharmacokinetics and efficacy of free and ANANAS-linked dexamethasone (ANANAS-Hz-Dex) in healthy and AIH mice were investigated upon intraperitoneal administration. In ANANAS-treated animals, the free drug was detected only in the liver. Super-resolution microscopy showed that nanoparticles segregate inside lysosomes of liver immunocompetent cells, mainly involved in AIH progression. In agreement with these observational results, chronic low-dose treatment with ANANAS-Hz-Dex reduced the expression of liver inflammation markers and, in contrast to the free drug, also the levels of circulating AIH-specific autoantibodies. These data suggest that the ANANAS carrier attenuates AIH-related liver damage without drug accumulation in off-site tissues. The safety and biodegradability of the ANANAS carrier make this formulation a promising tool for the treatment of autoimmune liver disorders.
机译:类固醇是自身免疫肝炎(AIH)的标准疗法,但长期管理受到严重副作用的阻碍。因此,需要改善药物的热感朝向肝脏的方法。其中,与纳米颗粒的缀合代表一种可能的策略。在这项研究中,我们利用伊霉素 - 核酸 - 纳米组件(Ananas)的天然肝脏对抗,选择性地将地塞米松携带到AIH动物模型中的肝脏。开发酸不稳定的生物素 - 腙接头,用于将可逆地塞米松加载到亚烷上。在腹膜内给药后研究了健康和AIH小鼠的自由和厌氧连接的地塞米松(Ananas-Hz-Dex)的生物分布,药代动力学和疗效。在Ananas治疗的动物中,仅在肝脏中检测到游离药物。超分辨率显微镜表明,纳米颗粒在肝免疫振动细胞的溶酶体中分离,主要参与AIH进展。在与这些观察结果的同意中,慢性低剂量处理与Ananas-Hz-Dex降低了肝脏炎症标志物的表达,与游离药物相比,循环AiH特异性自身抗体的水平。这些数据表明,ananas载体衰减了无菌相关的肝脏损伤,而不在非现场组织中积累。 Ananas载体的安全性和生物降解性使得该制剂成为治疗自身免疫肝障碍的有希望的工具。

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