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通过原子力显微镜对囊泡进行尺寸分布测量。

Size distribution measurement of vesicles by atomic force microscopy.

作者信息

Kanno Takashi, Yamada Tadanori, Iwabuki Hidehiko, Tanaka Hiroyuki, Kuroda Shun'ichi, Tanizawa Katsuyuki, Kawai Tomoji

机构信息

Department of Atomic Scale Science, Institute of Scientific and Industrial Research (SANKEN), Osaka University, Mihogaoka, Ibaraki, Osaka 567-0047, Japan.

出版信息

Anal Biochem. 2002 Oct 15;309(2):196-9. doi: 10.1016/s0003-2697(02)00291-9.

Abstract

Vesicles have been utilized as nanoscale vehicles for reagents including potential drug delivery systems. When used to deliver drugs, vesicle size and the size distribution are important factors in the determination of the dosage, cell specificity, and rate of clearance from the body. Current size measurement techniques for vesicles are electron microscopy and dynamic light scattering, but their results are not equal. Therefore atomic force microscopy was attempted as another size measurement technique. After adsorption of the vesicles from a low-concentration solution of vesicles on mica substrate, each vesicle is generally found as a flattened structure. The diameters of vesicles in these solutions and their distribution have been successfully estimated from the surface area of the flattened structure of each vesicle. At higher concentrations, we have found a monolayer crammed with dome-shaped vesicles on the substrate. The diameters of vesicles in these solutions have also been successfully estimated from the surface area of the dome-shaped structure of each vesicle. Diameters of vesicles in solution estimated from two different vesicle concentrations are not close to those reported by electron microscope studies but are close to those reported by dynamic light scattering studies.

摘要

囊泡已被用作包括潜在药物递送系统在内的试剂的纳米级载体。当用于递送药物时,囊泡大小和大小分布是确定剂量、细胞特异性和从体内清除速率的重要因素。目前用于囊泡的尺寸测量技术是电子显微镜和动态光散射,但它们的结果并不相同。因此,尝试将原子力显微镜作为另一种尺寸测量技术。在将囊泡从低浓度囊泡溶液吸附到云母基板上后,通常会发现每个囊泡都是扁平结构。已根据每个囊泡扁平结构的表面积成功估算出这些溶液中囊泡的直径及其分布。在较高浓度下,我们发现在基板上有一层挤满圆顶形囊泡的单层结构。这些溶液中囊泡的直径也已根据每个囊泡圆顶形结构的表面积成功估算出来。从两种不同囊泡浓度估算出的溶液中囊泡直径与电子显微镜研究报告的直径不接近,但与动态光散射研究报告的直径接近。

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