Barman Shrabani, Das Joyjyoti, Biswas Sandipan, Maiti T K, Pradeep Singh N D
Department of Chemistry, Indian Institute of Technology, Kharagpur 721302, West Bengal, India.
J Mater Chem B. 2017 Jun 7;5(21):3940-3944. doi: 10.1039/c7tb00379j. Epub 2017 May 11.
In spite of inventing several anticancer agents the clinical payoff still remains unsatisfactory because of their severe host toxicity due to their nonspecific biodistribution in the body. To achieve high efficiency in anti-cancer drug delivery, thus, we designed and developed a single component photoresponsive drug delivery system, a fusion of two platforms spiropyran and coumarin, which synchronizes two controlling factors: first, the lower pH of cancer tissue, which acts as an internal control and leads to the ring opening of spiropyran resulting in a distinct colour change and fluorescence activation of coumarin; and second, the release of the anti-tumor drug by the externally controlled light. Highly fluorescent nature and promising biocompatibility make the SP-Cou-Cbl system suitable for cell imaging and in vitro studies.
尽管已经发明了几种抗癌药物,但由于它们在体内的非特异性生物分布导致严重的宿主毒性,临床疗效仍然不尽人意。因此,为了实现抗癌药物递送的高效率,我们设计并开发了一种单组分光响应药物递送系统,它融合了螺吡喃和香豆素两个平台,同步了两个控制因素:第一,癌组织较低的pH值,作为内部控制,导致螺吡喃开环,从而使香豆素产生明显的颜色变化和荧光激活;第二,通过外部控制光释放抗肿瘤药物。高荧光特性和良好的生物相容性使SP-Cou-Cbl系统适用于细胞成像和体外研究。