Kircher Moritz F, Josephson Lee, Weissleder Ralph
Massachusetts General Hospital, Harvard Medical School, Bldg. 149 13th Street 5406, Charlestown, MA 02129-2060, USA.
Mol Imaging. 2002 Apr-Jun;1(2):89-95. doi: 10.1162/15353500200201124.
The design of near-infrared fluorescent (NIRF) probes that are activated by specific proteases has, for the first time, allowed enzyme activity to be imaged in vivo. In the current study, we report on a method of imaging enzyme activity using two fluorescent probes that, together, provide improved quantitation of enzymatic activity. The method employs two chemically similar probes that differ in their degradability by cathepsin B. One probe consists of the NIRF dye Cy5.5 attached to a particulate carrier, a crosslinked iron oxide nanoparticle (CLIO), through cathepsin B cleavable L-arginyl peptides. A second probe consists of Cy3.5 attached to a CLIO through proteolytically resistant D-arginyl peptides. Using mixtures of the two probes, we have shown that the ratio of Cy5.5 to Cy3.5 fluorescence can be used to determine levels of cathepsin B in the environment of nanoparticles with macrophages in suspension. After intravenous injection, tissue fluorescence from the nondegradable Cy3.5-D-arginyl probe reflected nanoparticle accumulation, while fluorescence of the Cy5.5-L-arginyl probe was dependent on both accumulation and activation by cathepsin B. Dual wavelength ratio imaging can be used for the quantitative imaging of a variety of enzymes in clinically important settings, while the magnetic properties of the probes allow their detection by MR imaging.
由特定蛋白酶激活的近红外荧光(NIRF)探针的设计首次实现了在体内对酶活性进行成像。在本研究中,我们报告了一种使用两种荧光探针成像酶活性的方法,这两种探针共同提供了对酶活性的改进定量。该方法采用了两种化学性质相似但对组织蛋白酶B的可降解性不同的探针。一种探针由通过组织蛋白酶B可切割的L - 精氨酰肽连接到颗粒载体(交联氧化铁纳米颗粒,CLIO)上的NIRF染料Cy5.5组成。第二种探针由通过抗蛋白水解的D - 精氨酰肽连接到CLIO上的Cy3.5组成。使用这两种探针的混合物,我们已经表明Cy5.5与Cy3.5荧光的比率可用于确定悬浮巨噬细胞环境中纳米颗粒周围组织蛋白酶B的水平。静脉注射后,不可降解的Cy3.5 - D - 精氨酰探针的组织荧光反映了纳米颗粒的积累,而Cy5.5 - L - 精氨酰探针的荧光则取决于纳米颗粒的积累以及组织蛋白酶B的激活。双波长比率成像可用于在临床重要环境中对多种酶进行定量成像,而探针的磁性特性允许通过磁共振成像对其进行检测。