Institute of Biomedical Chemistry, Pogodinskaya Str., 10, Moscow 119121, Russia.
Int J Mol Sci. 2023 Oct 19;24(20):15338. doi: 10.3390/ijms242015338.
Morphological features of the nanoform of a phospholipid composition (NFPh), which can be used as an individual pharmaceutic agent or as a platform for designing drug delivery systems, have been studied using atomic force microscopy (AFM). NFPh has been developed, and its characteristics have been investigated using conventional drug analysis methods, including the determination of the mean diameter of nanosized vesicles in the emulsion via dynamic light scattering (DLS). Using DLS, the mean diameter of the vesicles was found to be ~20 nm. AFM imaging of the surface has revealed four types of objects related to NFPh: (1) compact objects; (2) layer fragments; (3) lamellar structures; and (4) combined objects containing the compact and extended parts. For type (4) objects, it has been found that the geometric ratio of the volume of the convex part to the total area of the entire object is constant. It has been proposed that these objects formed owing to fusion of vesicles of the same size (with the same surface-to-volume ratio). It has been shown that this is possible for vesicles with diameters of 20 nm. This diameter is in good coincidence with the value obtained using DLS.
使用原子力显微镜(AFM)研究了磷脂组合物的纳米形式(NFPh)的形态特征,它可以用作单一药物制剂或作为设计药物传递系统的平台。已经开发了 NFPh,并使用常规药物分析方法研究了其特性,包括通过动态光散射(DLS)确定乳液中纳米尺寸囊泡的平均直径。使用 DLS,发现囊泡的平均直径约为 20nm。表面的 AFM 成像揭示了与 NFPh 相关的四种类型的物体:(1)紧密物体;(2)层碎片;(3)层状结构;和(4)包含紧密和扩展部分的组合物体。对于类型(4)的物体,已经发现凸部体积与整个物体总面积的几何比是恒定的。据推测,这些物体是由于相同尺寸(具有相同的表面积与体积比)的囊泡融合形成的。已经表明,对于直径为 20nm 的囊泡,这是可能的。该直径与使用 DLS 获得的值非常吻合。