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Enhanced imaging of lipid rich nanoparticles embedded in methylcellulose films for transmission electron microscopy using mixtures of heavy metals

机译:使用重金属混合物增强甲基纤维素膜中嵌入的富含脂质的纳米颗粒的成像,以用于透射电子显微镜

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摘要

Synthetic and naturally occurring lipid-rich nanoparticles are of wide ranging importance in biomedicine. They include liposomes, bicelles, nanodiscs, exosomes and virus particles. The quantitative study of these particles requires methods for high-resolution visualization of the whole population. One powerful imaging method is cryo-EM of vitrified samples, but this is technically demanding, requires specialized equipment, provides low contrast and does not reveal all particles present in a population. Another approach is classical negative stain- EM, which is more accessible but is difficult to standardize for larger lipidic structures, which are prone to artifacts of structure collapse and contrast variability. A third method uses embedment in methylcellulose films containing uranyl acetate as a contrasting agent. Methylcellulose embedment has been widely used for contrasting and supporting cryosections but only sporadically for visualizing lipid rich vesicular structures such as endosomes and exosomes. Here we present a simple methylcellulose-based method for routine and comprehensive visualization of synthetic lipid rich nanoparticles preparations, such as liposomes, bicelles and nanodiscs. It combines a novel double-staining mixture of uranyl acetate (UA) and tungsten-based electron stains (namely phosphotungstic acid (PTA) or sodium silicotungstate (STA)) with methylcellulose embedment. While the methylcellulose supports the delicate lipid structures during drying, the addition of PTA or STA to UA provides significant enhancement in lipid structure display and contrast as compared to UA alone. This double staining method should aid routine structural evaluation and quantification of lipid rich nanoparticles structures.
机译:合成的和天然存在的富含脂质的纳米颗粒在生物医学中具有广泛的重要性。它们包括脂质体,双细胞,纳米光盘,外来体和病毒颗粒。这些颗粒的定量研究需要用于整个种群的高分辨率可视化的方法。一种有效的成像方法是对玻璃化样品进行冷冻-EM,但是在技术上要求很高,需要专用设备,对比度低并且不能显示出种群中存在的所有颗粒。另一种方法是经典的负性染色剂EM,它更易获得,但很难对较大的脂质结构进行标准化,因为较大的脂质结构易于出现结构崩溃和对比度变化的伪影。第三种方法使用包埋在包含乙酸铀酰作为对比剂的甲基纤维素膜中。甲基纤维素埋入法已广泛用于对比和支持冰冻切片,但只是偶尔用于可视化富含脂质的囊泡结构,例如内体和外体。在这里,我们提出了一种简单的基于甲基纤维素的方法,用于常规和全面可视化合成脂质丰富的纳米颗粒制剂,例如脂质体,双细胞和纳米光盘。它结合了乙酸铀酰(UA)和钨基电子染料(即磷钨酸(PTA)或硅钨酸钠(STA))的新型双重染色混合物,并嵌入了甲基纤维素。尽管甲基纤维素在干燥过程中支持脆弱的脂质结构,但与UA相比,向UA添加PTA或STA可以显着增强脂质结构的显示和对比度。这种双重染色方法应有助于常规结构评估和定量富脂质纳米颗粒结构。

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