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In Vivo Imaging of Intraperitoneally Disseminated Tumors in Model Mice by Using Activatable Fluorescent Small-Molecular Probes for Activity of Cathepsins

机译:通过使用可激活的荧光小分子探针对组织蛋白酶的活性,在小鼠体内进行腹膜内弥漫性肿瘤的成像。

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It is difficult to completely remove carcinomas in unguided ablative surgery because they cannot be distinguished with the unaided human eye. Therefore, in order to precisely visualize tiny tumors and the borders between cancerous lesions and normal tissues, we have been developing fluorescence probes activatable only in cancer cells. We previously reported the hydroxymethylrhodamine green (HMRG)-based fluorescence probe gGlu-HMRG for γ-glutamyltransferase (GGT), which is overexpressed in a variety of cancer cells, and we showed that it enables in vivo rapid detection of human ovarian cancer SHIN-3 nodules with a high tumor-to-background (T/B) fluorescence ratio in model mice. However, cancer cell lines with low GGT expression could hardly be detected with gGlu-HMRG. Here we developed two new HMRG-based fluorescence probes for the cathepsin family of cysteine proteases, including cathepsin B (CatB) and cathepsin L (CarL), which show increased expression and/or activity, secretion, and altered localization in many kinds of cancer cells. The developed probes, Z-Phe-Arg-HMRG and Z-Arg-Arg-HMRG, are colorless and nonfluorescent at the physiological pH of 7.4, but are hydrolyzed to HMRG upon reaction with purified cathepsins, resulting in a more than 200-fold fluorescence increase. These probes could visualize human ovarian cancer cell lines SHIN-3, SK-OV-3, and OVCAR-3, of which the latter two were hardly detectable with gGlu-HMRG. Z-Phe-Arg-HMRG showed higher applicability than Z-Arg-Arg-HMRG for in vivo imaging, and we confirmed that 0.5-mm-sized SK-OV-3 tumor nodules disseminated on the mesentery in a mouse model could be rapidly visualized by Z-Phe-Arg-HMRG, with a T/B fluorescence ratio of 4.2. Further, intraperitoneally disseminated tumor could be visualized in real time in vivo by fluorescence endoscopy after spraying Z-Phe-Arg-HMRG, with a T/B ratio of 3. In conclusion, our HMRG-based activatable probes targeted to cathepsins have expanded the detectable range of, cancers, and appear to be suitable for clinical application.
机译:在无引导的消融手术中很难完全切除癌,因为无法用肉眼识别。因此,为了精确地观察微小的肿瘤以及癌性病变与正常组织之间的边界,我们一直在开发仅在癌细胞中可激活的荧光探针。我们之前曾报道过基于羟甲基罗丹明绿(HMRG)的荧光探针gGlu-HMRG用于γ-谷氨酰转移酶(GGT),该探针在多种癌细胞中均过表达,并且我们证明了它能够在体内快速检测人卵巢癌SHIN-在模型小鼠中具有高肿瘤与背景(T / B)荧光比的3个结节。但是,用gGlu-HMRG几乎不能检测到具有低GGT表达的癌细胞系。在这里,我们为半胱氨酸蛋白酶的组织蛋白酶家族开发了两种新的基于HMRG的荧光探针,包括组织蛋白酶B(CatB)和组织蛋白酶L(CarL),它们在多种癌症中均表现出增加的表达和/或活性,分泌和改变的定位细胞。研发的探针Z-Phe-Arg-HMRG和Z-Arg-Arg-HMRG在生理pH值为7.4时是无色且无荧光的,但在与纯化的组织蛋白酶反应后会水解为HMRG,其结果是200倍以上荧光增强。这些探针可以使人卵巢癌细胞系SHIN-3,SK-OV-3和OVCAR-3可视化,而后两者很难用gGlu-HMRG检测到。 Z-Phe-Arg-HMRG在体内成像方面显示出比Z-Arg-Arg-HMRG高的适用性,并且我们证实,在小鼠模型中在肠系膜上散布的0.5毫米大小的SK-OV-3肿瘤结节可以迅速由Z-Phe-Arg-HMRG可视化,T / B荧光比为4.2。此外,喷洒Z-Phe-Arg-HMRG后,可通过荧光内窥镜实时观察到腹膜内扩散的肿瘤,T / B比为3。总之,我们针对组织蛋白酶的基于HMRG的可激活探针扩大了可检测范围的癌症,似乎适合临床应用。

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