Wyss Institute and Harvard Medical School, Boston, MA 02115, USA.
Neurochemistry Laboratory, Department of Psychiatry, Massachusetts General Hospital and Harvard Medical School, Charlestown, MA 02129, USA.
Int J Mol Sci. 2020 Apr 27;21(9):3068. doi: 10.3390/ijms21093068.
The use of fluorescent imaging probes that monitor the activity of proteases that experience an increase in expression and activity in tumors is well established. These probes can be conjugated to nanoparticles of iron oxide, creating a multimodal probe serving as both a magnetic resonance imaging (MRI) agent and an indicator of local protease activity. Previous works describe probes for cathepsin D (CatD) and metalloproteinase-2 (MMP2) protease activity grafted to cross-linked iron oxide nanoparticles (CLIO). Herein, we have synthesized a triply labeled fluorescent iron oxide nanoparticle molecular imaging (MI) probe, including an AF750 substrate concentration reporter along with probes for cathepsin B (CatB) sand MMP2 protease activity. The reporter provides a baseline signal from which to compare the activity of the two proteases. The activity of the MI probe was verified through incubation with the proteases and tested in vitro using the human HT29 tumor cell line and in vivo using female nude mice injected with HT29 cells. We found the MI probe had the appropriate specificity to the activity of their respective proteases, and the reporter dye did not activate when incubated in the presence of only MMP2 and CatB. Probe fluorescent activity was confirmed in vitro, and reporter signal activation was also noted. The fluorescent activity was also visible in vivo, with injected HT29 cells exhibiting fluorescence, distinguishing them from the rest of the animal. The reporter signal was also observable in vivo, which allowed the signal intensities of the protease probes to be corrected; this is a unique feature of this MI probe design.
荧光成像探针用于监测在肿瘤中表达和活性增加的蛋白酶的活性,这种方法已经得到了很好的建立。这些探针可以与氧化铁纳米颗粒结合,形成一种多模态探针,既可以作为磁共振成像(MRI)剂,也可以作为局部蛋白酶活性的指示剂。以前的工作描述了用于组织蛋白酶 D(CatD)和基质金属蛋白酶-2(MMP2)蛋白酶活性的探针,这些探针接枝到交联氧化铁纳米颗粒(CLIO)上。在此,我们合成了一种三重标记的荧光氧化铁纳米颗粒分子成像(MI)探针,其中包括 AF750 底物浓度报告分子以及 Cathepsin B(CatB)和 MMP2 蛋白酶活性探针。该报告分子提供了一个基线信号,用于比较两种蛋白酶的活性。通过与蛋白酶孵育来验证 MI 探针的活性,并在体外使用人 HT29 肿瘤细胞系进行测试,在体内使用注射 HT29 细胞的雌性裸鼠进行测试。我们发现 MI 探针对其各自蛋白酶的活性具有适当的特异性,并且当仅在 MMP2 和 CatB 存在下孵育时,报告染料不会被激活。在体外证实了探针的荧光活性,并且还观察到了报告信号的激活。荧光活性在体内也可见,注射的 HT29 细胞表现出荧光,使其与动物的其余部分区分开来。体内也可以观察到报告信号,这允许校正蛋白酶探针的信号强度;这是这种 MI 探针设计的独特功能。