Department of Chemistry and ‡Department of Biotechnology, Indian Institute of Technology , Kharagpur 721302, West Bengal, India.
ACS Appl Mater Interfaces. 2017 Aug 30;9(34):28180-28184. doi: 10.1021/acsami.7b05132. Epub 2017 Aug 21.
Remedial cancer therapy deals with a large number of theranostic applications. However, systems, so far known, are only capable of single surveillance for both diagnostic and therapeutic modes of action. A nanosystem, which can be localized to the cancer and deliver the chemotherapeutic agent on demand, will provide effective therapeutic activity. Herein, we designed a single component nanoprodrug ANPD-X (Activatable Nano Pro-Drug-X) which indentified the tumor sites by fluorescent color change (signal 1, blue to green fluorescence) using HO-mediated oxidation of boronate fluorophore. In the next step, precise spatiotemporal irradiation of light only on identified tumor sites resulted in the release of anticancer drug chlorambucil. The real time information on drug release was achieved by a second fluorescence color change (signal 2, green to blue fluorescence). Thus, nanoprodrug ANPD-X provided overall two-step surveillance in the anticancer drug delivery. Activation of the ANPD-X after addition of HO and drug release upon photoirradiation was investigated in vitro by monitoring its fluorescence in the HeLa cell line.
补救癌症疗法涉及大量治疗诊断应用。然而,迄今为止已知的系统仅能够对诊断和治疗作用模式进行单一监测。一种可以定位到癌症并按需输送化疗药物的纳米系统将提供有效的治疗活性。在此,我们设计了一种单成分纳米前药 ANPD-X(可激活的纳米前药-X),它使用 HO 介导的硼酸荧光团氧化来通过荧光颜色变化(信号 1,蓝色变为绿色荧光)来识别肿瘤部位。在下一个步骤中,仅对已识别的肿瘤部位进行精确的时空光照射,导致抗癌药物苯丁酸氮芥的释放。通过第二次荧光颜色变化(信号 2,绿色变为蓝色荧光)实现了药物释放的实时信息。因此,纳米前药 ANPD-X 提供了抗癌药物输送的整体两步监测。通过在 HeLa 细胞系中监测其荧光来研究 HO 加后 ANPD-X 的激活和光照射后药物释放。