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Narrow size distribution nanoparticle production by electrospray processing of ferritin

机译:铁蛋白电喷雾工艺生产窄粒度分布纳米颗粒

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摘要

Electrospraying and in-flight heating of ferritin, the iron-storage protein, was used to produce controlled size, monodisperse aerosol particles which can be used as size standards for instrument calibration. As aerosol particles can be collected in liquids or on a substrate, standard size aerosol nanoparticles can be used for the calibration and development of not only aerosol instrumentation, but also colloid instrumentation and electron microscopes. Differences in the sizes of apoferritin and ferritin were detectable using scanning mobility particle spectrometry. Apoferritin has a mobility diameter of 11.8nm, while iron-rich ferritin had a mobility diameter of 13.1 nm and the size distribution function of both apoferritin and ferritin had geometric standard deviations of 1.05. In-flight heating in a furnace aerosol reactor was used to remove the ferritin protein coat and produce monodisperse iron oxide particles 7.9 nm in diameter and a size distribution function geometric standard deviation of 1.07. Ferritin dimers and higher order n-mers, produced from multiple ferritin complexes being present in a single electrospray droplet, remained bound to each other after in-flight heating. Monte Carlo simulations of the electrospray process showed that as long as the electrospray droplets are sufficiently monodisperse, monodisperse standard size nanoparticles can also be produced from ferritin n-mers.
机译:铁蛋白(铁存储蛋白)的电喷雾和飞行中加热用于产生尺寸受控的单分散气溶胶颗粒,可用作仪器校准的尺寸标准。由于气溶胶颗粒可以收集在液体中或基质上,因此标准尺寸的气溶胶纳米颗粒不仅可以用于气溶胶仪器的校准和开发,还可以用于胶体仪器和电子显微镜的校准和开发。使用扫描迁移率粒子光谱法可以检测到载铁蛋白和铁蛋白大小的差异。载铁蛋白的迁移率直径为11.8nm,而富铁铁蛋白的迁移率直径为13.1nm,载铁蛋白和铁蛋白的尺寸分布函数的几何标准差为1.05。在炉内气溶胶反应器中进行飞行中加热,以去除铁蛋白蛋白涂层,并制得直径为7.9 nm,尺寸分布函数几何标准偏差为1.07的单分散氧化铁颗粒。由存在于单个电喷雾液滴中的多种铁蛋白复合物产生的铁蛋白二聚体和更高阶的n-聚体,在飞行中加热后仍彼此结合。电喷雾过程的蒙特卡洛模拟显示,只要电喷雾液滴充分单分散,也可以从铁蛋白n-聚体制备单分散标准尺寸的纳米颗粒。

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