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Macrophage uptake of cylindrical microparticles investigated with correlative microscopy

机译:用相关显微镜研究柱面微粒的巨噬细胞吸收

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摘要

Cylindrical particles offer the opportunity to develop controlled and sustained release systems for the respiratory tract. One reason is that macrophages can phagocyte such particles only from either of the two ends. We investigated the uptake behaviour of murine alveolar macrophages incubated with elongated submicron-structured particles. For that purpose, fluorescent model silica nanoparticles were interconnected with the biocompatible polysaccharide agarose, building up cylindrical particles within the pores of track-etched membranes. In contrast to common approaches we determined the uptake at different time points with scanning electron microscopy, fluorescence microscopy, and the combination of both techniques correlative microscopy (CLEM). As a consequence, we could securely identify uptake events and observe in detail the engulfment of particles and confirm, that phagocytosis could only be observed from the tips of the cylinders. CLEM allowed a comparison of the uptake measured with different techniques at identical macrophages. Qualitative and quantitative evaluation of this cylindrical particle uptake showed substantial differences between fluorescence microscopy, electron microscopy and the combination of both (CLEM) within 24 h. (C) 2015 Elsevier B.V. All rights reserved.
机译:圆柱形粒子提供了为呼吸道进行控制和持续的释放系统提供机会。一个原因是巨噬细胞只能从两端中的任一个吞噬这种颗粒。我们调查了与细长亚微米结构颗粒孵育的小鼠肺泡巨噬细胞的摄取行为。为此目的,荧光模型二氧化硅纳米颗粒与生物相容性多糖琼脂糖互连,在轨道蚀刻膜的孔内建立圆柱形颗粒。与常见的方法相比,我们确定不同时间点的摄取,扫描电子显微镜,荧光显微镜和两种技术相关显微镜(CLEM)的组合。因此,我们可以安全地识别摄取事件并详细观察粒子并确认,即只能从气缸的尖端观察吞噬作用。 CLEM允许在相同的巨噬细胞处用不同技术测量的摄取的比较。这种圆柱形颗粒摄取的定性和定量评估显示出荧光显微镜,电子显微镜和24小时内(CLEM)的组合之间的显着差异。 (c)2015 Elsevier B.v.保留所有权利。

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