Department of Chemistry, Texas Christian University , Fort Worth, Texas 76129, United States.
Mol Pharm. 2013 Dec 2;10(12):4452-61. doi: 10.1021/mp400290u. Epub 2013 Nov 15.
The synthesis and characterization of a generation three triazine dendrimer that displays a phenolic group at the core for labeling, up to eight 5 kDa PEG chains for solubility, and 16 paclitaxel groups is described. Three different diamine linkers--dipiperidine trismethylene, piperazine, and aminomethylpiperidine--were used within the dendrimer. To generate the desired stoichiometric ratio of 8 PEG chains to 16 paclitaxel groups, a monochlorotriazine was prepared with two paclitaxel groups attached through their 2'-hydroxyls using a linker containing a labile disulfide. This monochlorotriazine was linked to a dichlorotriazine with aminomethylpiperidine. The resulting dichlorotriazine bearing two paclitaxel groups could be reacted with the eight amines of the dendrimer. NMR and MALDI-TOF confirm successful reaction. The eight monochlorotriazines of the resulting material are used as the site for PEGylation affording the desired 2:1 stoichiometry. The target and intermediates were amenable to characterization by (1)H and (13)C NMR, and mass spectrometry. Analysis revealed that 16 paclitaxel groups were installed along with 5-8 PEG chains. The final construct is 63% PEG, 22% paclitaxel, and 15% triazine dendrimer. Consistent with previous efforts and computational models, 5 kDa PEG groups were essential for making the target water-soluble. Molecular dynamics simulations showed a high degree of hydration of the core, and a radius of gyration of 2.8 ± 0.2 nm. The hydrodynamic radius of the target was found to be 15.8 nm by dynamic light scattering, an observation indicative of aggregation. Drug release studies performed in plasma showed slow and identical release in mouse and rat plasma (8%, respectively). SPECT/CT imaging was used to follow biodistribution and tumor uptake. Using a two component model, the elimination and distribution half-lives were 2.65 h and 38.2 h, respectively. Compared with previous constructs, this dendrimer persists in the vasculature longer (17.33 ± 0.88% ID/g at 48 h postinjection), and showed higher tumor uptake. Low levels of dendrimer were observed in lung, liver, and spleen (~6% ID/g). Tumor saturation studies of small prostate cancer tumors (PC3) suggest that saturation occurs at a dose between 23.2 mg/kg and 70.9 mg/kg.
描述了一种第三代三嗪树突的合成和表征,该树突在核心处显示出一个酚基团用于标记,多达 8 个 5 kDa PEG 链用于提高溶解度,以及 16 个紫杉醇基团。在树突内使用了三种不同的二胺接头 - 二哌啶三亚甲基、哌嗪和氨甲基哌啶。为了生成所需的 8 个 PEG 链与 16 个紫杉醇基团的化学计量比,通过其 2'-羟基连接了两个紫杉醇基团的单氯三嗪通过含有不稳定二硫键的接头制备。该单氯三嗪与带有氨甲基哌啶的二氯三嗪连接。得到的带有两个紫杉醇基团的二氯三嗪可以与树突的八个胺反应。NMR 和 MALDI-TOF 证实反应成功。所得材料的八个单氯三嗪可用作 PEGylation 的位点,从而得到所需的 2:1 化学计量比。目标物和中间体可通过(1)H 和(13)C NMR 以及质谱进行分析。分析表明,16 个紫杉醇基团与 5-8 个 PEG 链一起安装。最终构建物的 PEG 含量为 63%,紫杉醇含量为 22%,三嗪树突为 15%。与先前的努力和计算模型一致,5 kDa PEG 基团对于使目标物水溶性至关重要。分子动力学模拟显示核心具有高度水合作用,旋转半径为 2.8 ± 0.2nm。通过动态光散射发现目标物的流体力学半径为 15.8nm,这表明存在聚集。在血浆中进行的药物释放研究表明,在小鼠和大鼠血浆中的释放速度缓慢且相同(分别为 8%)。SPECT/CT 成像用于跟踪生物分布和肿瘤摄取。使用两成分模型,消除和分布半衰期分别为 2.65 h 和 38.2 h。与以前的构建物相比,这种树突在血管中停留的时间更长(注射后 48 小时内为 17.33 ± 0.88%ID/g),并且显示出更高的肿瘤摄取率。在肺、肝和脾中观察到低水平的树突(~6%ID/g)。对小型前列腺癌肿瘤(PC3)的肿瘤饱和研究表明,在 23.2mg/kg 和 70.9mg/kg 之间的剂量下会发生肿瘤饱和。