Department of Chemical and Biomolecular Engineering, National University of Singapore , 4 Engineering Drive 4, Singapore 117585.
J Am Chem Soc. 2014 Feb 12;136(6):2546-54. doi: 10.1021/ja411811w. Epub 2014 Jan 29.
Targeted drug delivery to tumor cells with minimized side effects and real-time in situ monitoring of drug efficacy is highly desirable for personalized medicine. In this work, we report the synthesis and biological evaluation of a chemotherapeutic Pt(IV) prodrug whose two axial positions are functionalized with a cyclic arginine-glycine-aspartic acid (cRGD) tripeptide for targeting integrin αvβ3 overexpressed cancer cells and an apoptosis sensor which is composed of tetraphenylsilole (TPS) fluorophore with aggregation-induced emission (AIE) characteristics and a caspase-3 enzyme specific Asp-Glu-Val-Asp (DEVD) peptide. The targeted Pt(IV) prodrug can selectively bind to αvβ3 integrin overexpressed cancer cells to facilitate cellular uptake. In addition, the Pt(IV) prodrug can be reduced to active Pt(II) drug in cells and release the apoptosis sensor TPS-DEVD simultaneously. The reduced Pt(II) drug can induce the cell apoptosis and activate caspase-3 enzyme to cleave the DEVD peptide sequence. Due to free rotation of the phenylene rings, TPS-DEVD is nonemissive in aqueous media. The specific cleavage of DEVD by caspase-3 generates the hydrophobic TPS residue, which tends to aggregate, resulting in restriction of intramolecular rotations of the phenyl rings and ultimately leading to fluorescence enhancement. Such noninvasive and real-time imaging of drug-induced apoptosis in situ can be used as an indicator for early evaluation of the therapeutic responses of a specific anticancer drug.
靶向递送到肿瘤细胞,最小化副作用,并实时原位监测药物疗效,这对个性化医疗来说是非常理想的。在这项工作中,我们报告了一种化疗 Pt(IV)前药的合成和生物学评价,其两个轴向位置被功能化的环精氨酸-甘氨酸-天冬氨酸 (cRGD) 三肽用于靶向整合素 αvβ3 过表达的癌细胞和一个由四苯基硅咯 (TPS) 荧光团与聚集诱导发射 (AIE) 特性组成的凋亡传感器,以及 caspase-3 酶特异性天冬氨酸-谷氨酸-缬氨酸-天冬氨酸 (DEVD) 肽。靶向 Pt(IV)前药可以选择性地与过表达 αvβ3 整合素的癌细胞结合,促进细胞摄取。此外,Pt(IV)前药可以在细胞内还原为活性 Pt(II)药物,并同时释放凋亡传感器 TPS-DEVD。还原的 Pt(II)药物可以诱导细胞凋亡并激活 caspase-3 酶切割 DEVD 肽序列。由于联苯环的自由旋转,TPS-DEVD 在水介质中是非发光的。DEVD 被 caspase-3 特异性切割生成疏水性 TPS 残基,其倾向于聚集,从而限制了苯环的分子内旋转,最终导致荧光增强。这种非侵入性和实时原位成像可以作为评估特定抗癌药物治疗反应的早期指标。