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Proteomic analysis of intracellular protein corona of nanoparticles elucidates nano-trafficking network and nano-bio interactions

机译:纳米粒子细胞内蛋白质电晕蛋白质组学分析阐明纳米贩运网络和纳米生物相互作用

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The merits of nanomedicines are significantly impacted by the surrounding biological environment. Similar to the protein corona generated on the surface of nanoparticles in the circulation system, the intracellular protein corona (IPC) might be formed on nanoparticles when transported inside the cells. However, little is known currently about the formation of IPC and its possible biological influence. Methods: Caco-2 cells, a classical epithelial cell line, were cultured in Transwell plates to form a monolayer. Gold nanoparticles (AuNPs) were prepared as the model nanomedicine due to their excellent stability. Here we focused on identifying IPC formed on the surface of AuNPs during cell transport. The nanoparticles in the basolateral side of the Caco-2 monolayer were collected and analyzed by multiple techniques to verify IPC formation. High-performance liquid chromatography-tandem mass spectrometry (LC-MS/MS)-based proteomics was utilized to analyze the composition of IPC proteins. In particular, we established a dual-filtration strategy to exclude various interference in IPC identification. Based on the subcellular localization of specific IPC proteins, we elicited the nano-trafficking network of AuNPs. The transport pathways of AuNPs identified by proteomic analysis were also verified by various conventional technologies. Finally, we explored the influence of IPC on the uptake and stress response of endothelium. Results: The existence of IPC was demonstrated on the surface of AuNPs, in which 227 proteins were identified. Among them, 40 proteins were finally ascertained as the specific IPC proteins. The subcellular location analysis indicated that these "specific" IPC proteins could back-track the transport pathways of nanoparticles in the epithelial cell monolayer. According to the subcellular distribution of IPC proteins and co-localization, we discovered a new pathway of nanoparticles from endosomes to secretory vesicles which was dominant during the transcytosis. After employing conventional imageology and pharmacology strategies to verify the result of proteomic analysis, we mapped a comprehensive intracellular transport network. Our study also revealed the merits of IPC analysis, which could readily elucidate the molecular mechanisms of transcytosis. Besides, the IPC proteins increased the uptake and stress response of endothelium, which was likely mediated by extracellular matrix and mitochondrion-related IPC proteins. Conclusion: The comprehensive proteomic analysis of IPC enabled tracing of transport pathways in epithelial cells as well as revealing the biological impact of nanoparticles on endothelium.? The author(s).
机译:纳米胺的优点因周围的生物环境而受到显着影响。类似于在循环系统中纳米颗粒表面产生的蛋白质电晕,当在细胞内部输送时,可以在纳米颗粒上形成细胞内蛋白质电晕(IPC)。然而,目前众所周知关于IPC的形成及其可能的生物学影响。方法:Caco-2细胞,一种经典上皮细胞系在Transwell平板中培养,形成单层。由于其优异的稳定性,制备金纳米颗粒(AUNP)作为模型纳米胺。在这里,我们专注于在细胞运输期间识别形成在AUNPS表面上的IPC。通过多种技术收集CaCo-2单层的基石侧的纳米颗粒,并通过多种技术进行分析以验证IPC地层。利用高效液相色谱 - 串联质谱(LC-MS / MS)基于蛋白质组学分析IPC蛋白的组成。特别是,我们建立了双重过滤策略,以排除IPC识别中的各种干扰。基于特定IPC蛋白的亚细胞定位,我们引发了纳米贩运网络的AUNP网络。通过各种常规技术验证了通过蛋白质组学分析鉴定的AUNP的运输途径。最后,我们探讨了IPC对内皮的摄取和应激反应的影响。结果:IPC的存在于AUNPS表面上证明,其中鉴定了227个蛋白质。其中,最终确定40种蛋白质作为特定IPC蛋白。亚细胞定位分析表明,这些“特异性”IPC蛋白可以回到上皮细胞单层中纳米颗粒的传输途径。根据IPC蛋白和共同定位的亚细胞分布,我们发现了一种从内体的纳米粒子的新途径到分泌胞增分期间占主导地位的分泌囊泡。在采用常规的图像和药理学策略后验证蛋白质组学分析的结果,我们映射了一个综合的细胞内运输网络。我们的研究还揭示了IPC分析的优点,可以容易地阐明转胞增多症的分子机制。此外,IPC蛋白质增加了内皮的摄取和应力响应,其可能由细胞外基质和线粒体相关的IPC蛋白介导。结论:IPC综合蛋白质组学分析使上皮细胞中运输途径的追踪以及揭示纳米颗粒对内皮的生物学影响。作者。

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