Wong Pamela T, Tang Shengzhuang, Cannon Jayme, Mukherjee Jhindan, Isham Danielle, Gam Kristina, Payne Michael, Yanik Sean A, Baker James R, Choi Seok Ki
Michigan Nanotechnology Institute for Medicine and Biological Sciences, University of Michigan Medical School, 1150 W. Medical Ctr. Drive, Ann Arbor, MI, 48109, USA.
Department of Internal Medicine, University of Michigan Medical School, Ann Arbor, MI, 48109, USA.
Chembiochem. 2017 Jan 3;18(1):126-135. doi: 10.1002/cbic.201600494. Epub 2016 Nov 30.
Despite the immense potential of existing photocaging technology, its application is limited by the paucity of advanced caging tools. Here, we report on the design of a novel thioacetal ortho-nitrobenzaldehyde (TNB) dual arm photocage that enabled control of the simultaneous release of two payloads linked to a single TNB unit. By using this cage, which was prepared in a single step from commercial 6-nitroverataldehyde, three drug-fluorophore conjugates were synthesized: Taxol-TNB-fluorescein, Taxol-TNB-coumarin, and doxorubicin-TNB-coumarin, and long-wavelength UVA light-triggered release experiments demonstrated that dual payload release occurred with rapid decay kinetics for each conjugate. In cell-based assays performed in vitro, dual release could also be controlled by UV exposure, resulting in increased cellular fluorescence and cytotoxicity with potency equal to that of unmodified drug towards the KB carcinoma cell line. The extent of such dual release was quantifiable by reporter fluorescence measured in situ and was found to correlate with the extent of cytotoxicity. Thus, this novel dual arm cage strategy provides a valuable tool that enables both active control and real-time monitoring of drug activation at the delivery site.
尽管现有光笼技术具有巨大潜力,但其应用受到先进光笼工具匮乏的限制。在此,我们报告了一种新型硫代缩醛邻硝基苯甲醛(TNB)双臂光笼的设计,该光笼能够控制与单个TNB单元相连的两种负载的同时释放。通过使用这种由市售的6 - 硝基藜芦醛一步制备的光笼,合成了三种药物 - 荧光团缀合物:紫杉醇 - TNB - 荧光素、紫杉醇 - TNB - 香豆素和阿霉素 - TNB - 香豆素,长波长紫外线A光触发释放实验表明,每种缀合物的双负载释放均具有快速衰减动力学。在体外进行的基于细胞的实验中,双释放也可通过紫外线照射来控制,从而导致细胞荧光增加和细胞毒性增强,其效力与未修饰药物对KB癌细胞系的效力相当。这种双释放的程度可通过原位测量的报告荧光进行量化,并且发现其与细胞毒性程度相关。因此,这种新型双臂光笼策略提供了一种有价值的工具,能够在递送部位对药物激活进行主动控制和实时监测。