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首页> 外文期刊>ACS Omega >Polymer Nanoparticle Engineering for Podocyte Repair: From in Vitro Models to New Nanotherapeutics in Kidney Diseases
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Polymer Nanoparticle Engineering for Podocyte Repair: From in Vitro Models to New Nanotherapeutics in Kidney Diseases

机译:Podocyte修复的聚合物纳米粒子工程:从体外模型到肾脏疾病的新纳米治疗

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摘要

Specific therapeutic targeting of kidney podocytes, the highly differentiated ramified glomerular cells involved in the onset and/or progression of proteinuric diseases, could become the optimal strategy for preventing chronic kidney disease. With this aim, we developed a library of engineered polymeric nanoparticles (NPs) of tuneable size and surface properties and evaluated their interaction with podocytes. NP cytotoxicity, uptake, and cytoskeletal effects on podocytes were first assessed. On the basis of these data, nanodelivery of dexamethasone loaded into selected biocompatible NPs was successful in repairing damaged podocytes. Finally, a three-dimensional in vitro system of co-culture of endothelial cells and podocytes was exploited as a new tool for mimicking the mechanisms of NP interaction with glomerular cells and the repair of the kidney filtration barrier.
机译:肾小序细胞的特异性治疗靶向,蛋白疾病发作和/或进展中涉及的高度分化的分枝肾小球细胞,可能成为预防慢性肾病的最佳策略。通过这种目的,我们开发了可调谐尺寸和表面性质的工程化聚合物纳米颗粒(NPS),并评估了它们与多粒细胞的相互作用。第一次评估NP细胞毒性,摄取和细胞骨骼作用。在这些数据的基础上,纳米塞米松装载到选定的生物相容性NPS中的纳米次数是成功修复受损的多粒细胞。最后,利用内皮细胞和孔径细胞的三维体外系统作为一种新工具,用于模仿与肾小球细胞的NP相互作用和肾脏过滤屏的修复。

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