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Alcian blue staining to track the intracellular fate of hyaluronic-acid-based nanoparticles at transmission electron microscopy

机译:Alcian蓝色染色以跟踪透射电子显微镜下透明质酸纳米粒子的细胞内命运

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The main step in the assessment of nanomaterial safety and suitability for biomedical use is the location and the dynamic tracking of nanoparticles (NPs) inside cells or tissues. To precisely investigate the uptake mechanisms and intracellular fate of NPs, transmission electron microscopy is the technique of choice; however, the detection of NPs may sometimes be problematic. In fact, while NPs containing strongly electron dense (e.g., metal) components do not require specific detection methods at the ultrastructural level, organic NPs are hardly detectable in the intracellular environment due to their intrinsic moderate electron density. In this study, the critical-electrolyte-concentration Alcian Blue method set up by Schofield et al. in 1975 was applied to track hyaluronic-acid-based NPs in muscle cells in vitro. This long-established histochemical method proved to be a powerful tool allowing to identify not only whole NPs while entering cells and moving into the cytoplasm, but also their remnants following lysosomal degradation and extrusion.
机译:评估纳米材料安全性的主要步骤和生物医学使用的适合性是细胞或组织内纳米颗粒(NPS)的位置和动态跟踪。为了精确研究NPS的摄取机制和细胞内命运,透射电子显微镜是选择的技术;然而,NPS的检测有时可能是有问题的。实际上,虽然含有强电子致密(例如,金属)组分的NPS在超微结构水平下不需要特异性检测方法,但由于其固有的中等电子密度,在细胞内环境中几乎不能检测到有机NPS。在这项研究中,Schofield等人组建的临界电解质浓度ALCIAN蓝色方法。在1975年,在体外肌肉细胞中施加透射透明质酸的NPS。这种长期建立的组织化学方法证明是一种强大的工具,允许在进入细胞并进入细胞质的同时识别整个NPS,而且还在溶酶体降解和挤出后的残余物。

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