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Interaction of fine particles and nanoparticles with red blood cells visualized with advanced microscopic techniques

机译:细颗粒和纳米颗粒与红细胞的相互作用,通过先进的显微镜技术可视化

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So far, little is known about the interaction of nanoparticles with lung cells, the entering of nanoparticles, and their transport through the blood stream to other organs. The entering and localization of different nanoparticles consisting of differing materials and of different charges were studied in human red blood cells. As these cells do not have any phagocytic receptors on their surface, and no actin-myosin system, we chose them as a model for nonphagocytic cells to study how nanoparticles penetrate cell membranes. We combined different microscopic techniques to visualize fine and nanoparticles in red blood cells: (I) fluorescent particles were analyzed by laser scanning microscopy combined with digital image restoration, (II) gold particles were analyzed by conventional transmission electron microscopy and energy filtering transmission electron microscopy, and (III) titanium dioxide particles were analyzed by energy filtering transmission electron microscopy. By using these differing microscopic techniques we were able to visualize and detect particlese <= 0.2 mu m and nanoparticles in red blood cells. We found that the surface charge and the material of the particles did not influence their entering. These results suggest that particles may penetrate the red blood cell membrane by a still unknown mechanism different from phagocytosis and endocytosis.
机译:到目前为止,人们对纳米颗粒与肺细胞的相互作用,纳米颗粒的进入以及它们通过血流向其他器官的转运知之甚少。在人类红细胞中研究了由不同材料和不同电荷组成的不同纳米颗粒的进入和定位。由于这些细胞表面没有任何吞噬受体,并且没有肌动蛋白-肌球蛋白系统,因此我们选择它们作为非吞噬细胞的模型来研究纳米颗粒如何穿透细胞膜。我们结合了不同的显微镜技术来可视化红细胞中的细颗粒和纳米颗粒:(I)通过激光扫描显微镜结合数字图像恢复分析荧光颗粒,(II)通过常规透射电子显微镜和能量过滤透射电子显微镜分析金颗粒,和(III)二氧化钛颗粒通过能量过滤透射电子显微镜分析。通过使用这些不同的显微镜技术,我们能够可视化和检测红细胞中≤0.2微米的颗粒和纳米颗粒。我们发现表面电荷和颗粒的材料不影响它们的进入。这些结果表明颗粒可以通过与吞噬作用和内吞作用不同的未知机制穿透红细胞膜。

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