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Dilemmas in the reliable estimation of the in-vitro cell viability in magnetic nanoparticle engineering: which tests and what protocols?

机译:磁性纳米工程中可靠估计体外细胞生存力的难题:哪些测试和哪些协议?

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摘要

Magnetic nanoparticles [MNPs] made from iron oxides have many applications in biomedicine. Full understanding of the interactions between MNPs and mammalian cells is a critical issue for their applications. In this study, MNPs were coated with poly(ethylenimine) [MNP-PEI] and poly(ethylene glycol) [MNP-PEI-PEG] to provide a subtle difference in their surface charge and their cytotoxicity which were analysed by three standard cell viability assays: 3-(4,5-dimethylthiazol-2-yl)-5-(3-carboxymethoxyphenyl)-2-(4-sulfophenyl)-2H-tetrazolium [MTS], CellTiter-Blue and CellTiter-Glo (Promega, Southampton, UK) in SH-SY5Y and RAW 264.7 cells The data were validated by traditional trypan blue exclusion. In comparison to trypan blue manual counting, the MTS and Titer-Blue assays appeared to have consistently overestimated the viability. The Titer-Glo also experienced a small overestimation. We hypothesise that interactions were occurring between the assay systems and the nanoparticles, resulting in incorrect cell viability evaluation. To further understand the cytotoxic effect of the nanoparticles on these cells, reactive oxygen species production, lipid peroxidation and cell membrane integrity were investigated. After pegylation, the MNP-PEI-PEG possessed a lower positive surface charge and exhibited much improved biocompatibility compared to MNP-PEI, as demonstrated not only by a higher cell viability, but also by a markedly reduced oxidative stress and cell membrane damage. These findings highlight the importance of assay selection and of dissection of different cellular responses in in-vitro characterisation of nanostructures.
机译:由氧化铁制成的磁性纳米颗粒[MNP]在生物医学中有许多应用。全面了解MNP与哺乳动物细胞之间的相互作用是其应用的关键问题。在这项研究中,MNPs涂有聚乙烯亚胺[MNP-PEI]和聚乙二醇[MNP-PEI-PEG],以提供表面电荷和细胞毒性的细微差别,并通过三种标准细胞活力对其进行了分析。分析:3-(4,5-二甲基噻唑-2-基)-5-(3-羧基甲氧基苯基)-2-(4-磺苯基)-2H-四唑[MTS],CellTiter-Blue和CellTiter-Glo(Promega,南安普敦(英国)在SH-SY5Y和RAW 264.7细胞中的数据通过传统的锥虫蓝排除法验证了数据。与锥虫蓝手动计数相比,MTS和滴定蓝检测似乎一直高估了生存能力。 Titer-Glo也被高估了一点。我们假设检测系统和纳米颗粒之间发生相互作用,从而导致细胞活力评估不正确。为了进一步了解纳米颗粒对这些细胞的细胞毒性作用,研究了活性氧的产生,脂质过氧化和细胞膜完整性。聚乙二醇化后,与MNP-PEI相比,MNP-PEI-PEG具有较低的正表面电荷,并显示出大大改善的生物相容性,不仅表现出较高的细胞活力,而且氧化应激和细胞膜损伤显着降低。这些发现突显了在纳米结构的体外表征中选择分析方法和解剖不同细胞反应的重要性。

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