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多模态成像探针开发用于胰腺β细胞:从荧光到 PET。

Multimodal Imaging Probe Development for Pancreatic β Cells: From Fluorescence to PET.

机构信息

Laboratory of Bioimaging Probe Development , Singapore Bioimaging Consortium, Agency for Science, Technology and Research , Singapore 138667 , Singapore.

New Drug Discovery Center, DGMIF , Daegu 41061 , Republic of Korea.

出版信息

J Am Chem Soc. 2020 Feb 19;142(7):3430-3439. doi: 10.1021/jacs.9b11173. Epub 2020 Feb 10.

Abstract

Pancreatic β cells are responsible for insulin secretion and are important for glucose regulation in a healthy body and diabetic disease patient without prelabeling of islets. While the conventional biomarkers for diabetes have been glucose and insulin concentrations in the blood, the direct determination of the pancreatic β cell mass would provide critical information for the disease status and progression. By combining fluorination and diversity-oriented fluorescence library strategy, we have developed a multimodal pancreatic β cell probe for both fluorescence and for PET (positron emission tomography). By simple tail vein injection, stains pancreatic β cells specifically and allows intraoperative fluorescent imaging of pancreatic islets. -injected pancreatic tissue even facilitated an antibody-free islet analysis within 2 h, dramatically accelerating the day-long histological procedure without any fixing and dehydration step. Not only islets in the pancreas but also the low background of in the liver allowed us to monitor the intraportal transplanted islets, which is the first in vivo visualization of transplanted human islets without a prelabeling of the islets. Finally, we could replace the built-in fluorine atom in with radioactive 18F and successfully demonstrate in situ PET imaging for pancreatic islets.

摘要

胰岛β细胞负责胰岛素的分泌,对于健康人体和未经胰岛标记的糖尿病患者的葡萄糖调节非常重要。虽然糖尿病的传统生物标志物是血液中的葡萄糖和胰岛素浓度,但直接测定胰岛β细胞的质量将为疾病状态和进展提供关键信息。通过氟代和多样化导向的荧光文库策略,我们开发了一种用于荧光和正电子发射断层扫描(PET)的多模态胰岛β细胞探针。通过简单的尾静脉注射,探针特异性地染色胰岛β细胞,并允许术中对胰岛进行荧光成像。即使在 2 小时内,注入胰腺组织也可以方便地进行无抗体的胰岛分析,大大加快了长达一天的组织学过程,而无需任何固定和脱水步骤。不仅是胰腺中的胰岛,而且在肝脏中的低背景的 ,也使我们能够监测门静脉内移植的胰岛,这是首例无胰岛标记的体内可视化移植人胰岛。最后,我们可以用放射性 18F 取代 中的内置氟原子,并成功地对胰岛进行原位 PET 成像。

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