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Asymmetric Rhodamine-Based Fluorescent Probe for Multicolour In Vivo Imaging

机译:基于非对称罗丹明的荧光探针用于多色体内成像

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摘要

To achieve rapid and sensitive detection of cancer, activatable fluorescent probes targeting proteases that are overexpressed in various types of cancer have been developed, based on the hydroxymethyl rhodamine green (HMRG) scaffold. However, to visualize altered activities of multiple enzymes in cancer sites, other scaffolds with distinct fluorescence properties from those of HMRG are needed. A novel asymmetrically modified rhodamine with suitable absorption/emission, brightness and equilibrium constant of intramolecular spirocyclization, working in the yellow/orange region, is introduced. As a proof of concept, a probe targeting gamma-glutamyl transpeptidase (gGlu-HMJCR) was developed on the basis of the new scaffold. Simultaneous visualization and discrimination of tumours expressing gamma-glutamyl transpeptidase (with gGlu-HMJCR) and cathepsins (with Z-Phe-Arg-HMRG) by colour were achieved in a mouse model in vivo.
机译:为了实现对癌症的快速和灵敏检测,基于羟甲基若丹明绿(HMRG)支架,已经开发了针对在各种类型的癌症中过表达的蛋白酶的可激活荧光探针。然而,为了可视化癌症部位中多种酶的活性变化,需要具有与HMRG不同的荧光特性的其他支架。介绍了一种新颖的不对称修饰的若丹明,在黄色/橙色区域具有合适的吸收/发射,亮度和分子内螺环化的平衡常数。作为概念证明,在新支架的基础上开发了靶向γ-谷氨酰转肽酶(gGlu-HMJCR)的探针。在体内小鼠模型中,通过颜色同时可视化和区分了表达γ-谷氨酰转肽酶(带有gGlu-HMJCR)和组织蛋白酶(带有Z-Phe-Arg-HMRG)的肿瘤。

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