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Optical analysis of nanomaterial-cell interactions: flow cytometry and digital holographic microscopy

机译:纳米材料相互作用的光学分析:流式细胞仪和数字全息显微镜

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The in vitro cytotoxicity assessment of engineered nanoparticles commonly involves the measurement of different endpoints like the formation of reactive oxygen species, cell viability or cell death. Usually these parameters are determined by optical readouts of enzymatically converted substrates that often interfere with the tested nanomaterials. Using cell viability (WST-8) and cell death (LDH) as parameter we have initially investigated the toxic effects of spherical (NM 300) and rod shaped (NM 302) silver nanomaterials with a matrix of four cell lines representing different functions: lung and kidney epithelial cells, macrophages and fibroblasts. In addition, we have used a label-free flow cytometer configuration to investigate interactions of particles and macrophages by side scatter signal analysis. Finally, we explored digital holographic microscopy (DHM) for multimodal label-free analysis of nanomaterial toxicity. Quantitative DHM phase images were analyzed for cell thickness, volume, density, dry mass and refractive index. We could demonstrate that silver spheres lead to more cytotoxic effects than rods in all four examined cell lines and both assay. Exemplarily a dose dependent interaction increase of cells with NM 300 and NM 302 analyzed by flow cytometry is shown. Furthermore, we found that the refractive index of cells is influenced by incubation with NM 300 in a decreasing manner. A 24 hours time-lapse measurement revealed a dose dependent decrease of dry mass and surface area development indicating reduced cell viability and cell death. Our results demonstrate digital holographic microscopy and flow cytometry as valuable label-free tools for nanomaterial toxicity and cell interaction studies.
机译:工程化纳米粒子的体外细胞毒性评估通常涉及测量不同终点,如反应性氧物种,细胞活力或细胞死亡的形成。通常,这些参数由酶压转换的基材的光学读出确定,所述酶联的底物经常干扰测试的纳米材料。使用细胞活力(WST-8)和细胞死亡(LDH)作为参数,我们最初研究了球形(NM 300)和杆状(NM 302)银纳米材料的毒性作用,其具有表示不同功能的四个细胞系的基质:肺和肾上皮细胞,巨噬细胞和成纤维细胞。此外,我们使用了无标记的流动细胞仪配置来研究侧面散射信号分析的颗粒和巨噬细胞的相互作用。最后,我们探索了数字全息显微镜(DHM)进行多模式标签分析纳米材料毒性。分析定量DHM相片图像以进行细胞厚度,体积,密度,干肿块和折射率。我们可以证明银球导致所有四种检查细胞系和两种测定中的杆的细胞毒性效应。示例性地,示出了通过流式细胞仪分析的NM 300和NM 302的细胞的剂量依赖性相互作用增加。此外,我们发现细胞的折射率受到与NM 300的孵育的影响。 24小时的时间流逝测量显示了干肿块和表面积显影的剂量依赖性降低,表明细胞活力和细胞死亡降低。我们的结果展示了数字全息显微镜和流式细胞术,作为无纳米材料毒性和细胞相互作用研究的无标签工具。

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