Gorka Alexander P, Nani Roger R, Zhu Jianjian, Mackem Susan, Schnermann Martin J
Chemical Biology Laboratory, National Cancer Institute , 376 Boyles Street, Frederick, Maryland 21702, United States.
J Am Chem Soc. 2014 Oct 8;136(40):14153-9. doi: 10.1021/ja5065203. Epub 2014 Sep 24.
The development of photocaging groups activated by near-IR light would enable new approaches for basic research and allow for spatial and temporal control of drug delivery. Here we report a near-IR light-initiated uncaging reaction sequence based on readily synthesized C4'-dialkylamine-substituted heptamethine cyanines. Phenol-containing small molecules are uncaged through sequential release of the C4'-amine and intramolecular cyclization. The release sequence is initiated by a previously unexploited photochemical reaction of the cyanine fluorophore scaffold. The uncaging process is compatible with biological milieu and is initiated with low intensity 690 nm light. We show that cell viability can be inhibited through light-dependent release of the estrogen receptor antagonist, 4-hydroxycyclofen. In addition, through uncaging of the same compound, gene expression is controlled with near-IR light in a ligand-dependent CreER(T)/LoxP-reporter cell line derived from transgenic mice. These studies provide a chemical foundation that we expect will enable specific delivery of small molecules using cytocompatible, tissue penetrant near-IR light.
近红外光激活的光笼蔽基团的开发将为基础研究带来新方法,并实现药物递送的时空控制。在此,我们报告了一种基于易于合成的C4'-二烷基胺取代的七甲川花菁的近红外光引发的解笼反应序列。含酚的小分子通过C4'-胺的顺序释放和分子内环化而解笼。释放序列由花菁荧光团支架先前未被利用的光化学反应引发。解笼过程与生物环境兼容,并由低强度690 nm光引发。我们表明,雌激素受体拮抗剂4-羟基环芬的光依赖性释放可抑制细胞活力。此外,通过对同一化合物进行解笼,在源自转基因小鼠的配体依赖性CreER(T)/LoxP报告细胞系中,用近红外光控制基因表达。这些研究提供了一个化学基础,我们期望它将能够使用细胞相容、组织穿透性近红外光实现小分子的特异性递送。