Department of Pharmacy, Faculty of Health and Medical Sciences, University of Copenhagen, Universitetsparken 2, DK-2100 Copenhagen, Denmark.
Biomaterials. 2013 Nov;34(33):8491-503. doi: 10.1016/j.biomaterials.2013.07.055. Epub 2013 Aug 7.
We have developed a highly efficient method for the radiolabeling of phytantriol (PHYT)/oleic acid (OA)-based hexosomes based on the surface chelation of technetium-99m ((99m)Tc) to preformed hexosomes using the polyamine 1, 12-diamino-3, 6, 9-triazododecane (SpmTrien) as chelating agent. We also report on the unsuccessful labeling of cubosomes using the well-known chelating agent hexamethylpropyleneamine oxime (HMPAO). The (99m)Tc-labeled SpmTrien-hexosomes ((99m)Tc-SpmTrien-hexosomes) were synthesized with good radiolabeling (84%) and high radiochemical purity (>90%). The effect of radiolabeling on the internal nanostructure and the overall size of these aqueous dispersions was investigated by using synchrotron small angle X-ray scattering (SAXS), dynamic light scattering (DLS), and transmission electron cryo microscopy (cryo-TEM). Further, we show the utility of (99m)Tc-SpmTrien-hexosomes for the in vivo imaging of healthy mice using single photon emission computed tomography (SPECT) in combination with computed tomography (CT), i.e. SPECT/CT. SPECT/CT experiments of subcutaneously administered (99m)Tc-SpmTrien-hexosomes to the flank of mice showed a high stability in vivo allowing imaging of the distribution of the radiolabeled hexosomes for up to 24 h. These injected (99m)Tc-SpmTrien-hexosomes formed a deposit within the subcutaneous adipose tissue, displaying a high biodistribution of ≈ 343% injected dose/g tissue (%ID/g), with negligible uptake in other organs and tissues. The developed (99m)Tc labeling method for PHYT/OA-based hexosomes could further serve as a useful tool for investigating and imaging the in vivo performance of cubosomal and hexosomal drug nanocarriers.
我们开发了一种高效的方法,用于基于植烷三醇(PHYT)/油酸(OA)的六方脂质体的放射性标记,该方法基于使用多胺 1,12-二氨基-3,6,9-三氮杂十二烷(SpmTrien)作为螯合剂,将 technetium-99m((99m)Tc)螯合到预先形成的六方脂质体的表面。我们还报告了使用众所周知的螯合剂六甲基丙烯酰胺肟(HMPAO)标记立方脂质体的失败。(99m)Tc 标记的 SpmTrien-六方脂质体((99m)Tc-SpmTrien-六方脂质体)的放射性标记率良好(84%),放射化学纯度高(>90%)。通过同步加速器小角 X 射线散射(SAXS)、动态光散射(DLS)和透射电子 cryo 显微镜(cryo-TEM)研究了放射性标记对这些水基分散体的内部纳米结构和整体尺寸的影响。此外,我们展示了(99m)Tc-SpmTrien-六方脂质体在使用单光子发射计算机断层扫描(SPECT)与计算机断层扫描(CT)相结合的健康小鼠体内成像中的应用,即 SPECT/CT。对皮下给予(99m)Tc-SpmTrien-六方脂质体的小鼠进行 SPECT/CT 实验,结果表明其在体内具有高稳定性,允许对放射性标记的六方脂质体的分布进行长达 24 小时的成像。这些注射的(99m)Tc-SpmTrien-六方脂质体在皮下脂肪组织中形成沉积物,显示出 ≈ 343%注射剂量/克组织(%ID/g)的高生物分布,其他器官和组织的摄取可忽略不计。用于 PHYT/OA 基六方脂质体的(99m)Tc 标记方法可进一步作为研究和成像立方脂质体和六方脂质体药物纳米载体体内性能的有用工具。