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通过点击化学进行晚期功能化提供 GLUT5 靶向糖缀合物作为潜在的 PET 成像探针。

Late-Stage Functionalization through Click Chemistry Provides GLUT5-Targeting Glycoconjugate as a Potential PET Imaging Probe.

机构信息

Chemistry Department, Michigan Technological University, Houghton, MI 49931, USA.

Health Research Institute, Michigan Technological University, Houghton, MI 49931, USA.

出版信息

Int J Mol Sci. 2022 Dec 22;24(1):173. doi: 10.3390/ijms24010173.

Abstract

The targeting of facilitative sugar transporters (GLUTs) has been utilized in the development of tools for diagnostics and therapy. The interest in this area is promoted by the phenomenon of alterations in cellular metabolic processes that are linked to multitudes of metabolic disorders and diseases. However, nonspecific targeting (e.g., glucose-transporting GLUTs) leads to a lack of disease detection efficiency. Among GLUTs, GLUT5 stands out as a prominent target for developing specific molecular tools due to its association with metabolic diseases, including cancer. This work reports a non-radiolabeled fluoride (F) coumarin-based glycoconjugate of 2,5-anhydro-D-mannitol as a potential PET imaging probe that targets the GLUT5 transporter. Inherent fluorescent properties of the coumarin fluorophore allowed us to establish the probe's uptake efficiency and GLUT5-specificity in a GLUT5-positive breast cell line using fluorescence detection techniques. The click chemistry approach employed in the design of the probe enables late-stage functionalization, an essential requirement for obtaining the radiolabeled analog of the probe for future in vivo cancer imaging applications. The high affinity of the probe to GLUT5 allowed for the effective uptake in nutrition-rich media.

摘要

促进性糖转运蛋白(GLUTs)的靶向作用已被用于开发诊断和治疗工具。由于与多种代谢紊乱和疾病相关的细胞代谢过程的改变,人们对这一领域产生了兴趣。然而,非特异性靶向(例如,葡萄糖转运 GLUTs)导致疾病检测效率低下。在 GLUTs 中,GLUT5 因其与代谢疾病(包括癌症)的关联而成为开发特异性分子工具的突出靶标。本工作报道了一种基于非放射性氟(F)香豆素的 2,5-脱水-D-甘露醇糖缀合物,作为一种潜在的用于正电子发射断层扫描(PET)成像的探针,靶向 GLUT5 转运蛋白。香豆素荧光团的固有荧光特性使我们能够使用荧光检测技术在 GLUT5 阳性乳腺癌细胞系中建立探针的摄取效率和 GLUT5 特异性。设计探针中采用的点击化学方法可实现后期功能化,这是获得探针放射性标记类似物以用于未来体内癌症成像应用的必要条件。探针对 GLUT5 的高亲和力允许其在富含营养的培养基中有效摄取。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a285/9820411/7d4c73c5b468/ijms-24-00173-g001.jpg

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