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通过正电子发射断层扫描对胰岛细胞进行成像。

Imaging pancreatic islet cells by positron emission tomography.

作者信息

Li Junfeng, Karunananthan Johann, Pelham Bradley, Kandeel Fouad

机构信息

Junfeng Li, Johann Karunananthan, Bradley Pelham, Fouad Kandeel, Department of Diabetes, Endocrinology and Metabolism, Beckman Research Institute of the City of Hope, Duarte, CA 91010, United States.

出版信息

World J Radiol. 2016 Sep 28;8(9):764-774. doi: 10.4329/wjr.v8.i9.764.

Abstract

It was estimated that every year more than 30000 persons in the United States - approximately 80 people per day - are diagnosed with type 1 diabetes (T1D). T1D is caused by autoimmune destruction of the pancreatic islet (β cells) cells. Islet transplantation has become a promising therapy option for T1D patients, while the lack of suitable tools is difficult to directly evaluate of the viability of the grafted islet over time. Positron emission tomography (PET) as an important non-invasive methodology providing high sensitivity and good resolution, is able to accurate detection of the disturbed biochemical processes and physiological abnormality in living organism. The successful PET imaging of islets would be able to localize the specific site where transplanted islets engraft in the liver, and to quantify the level of islets remain alive and functional over time. This information would be vital to establishing and evaluating the efficiency of pancreatic islet transplantation. Many novel imaging agents have been developed to improve the sensitivity and specificity of PET islet imaging. In this article, we summarize the latest developments in carbon-11, fluorine-18, copper-64, and gallium-68 labeled radioligands for the PET imaging of pancreatic islet cells.

摘要

据估计,美国每年有超过30000人——约每天80人——被诊断为1型糖尿病(T1D)。T1D是由胰腺胰岛(β细胞)的自身免疫性破坏引起的。胰岛移植已成为T1D患者一种有前景的治疗选择,然而缺乏合适的工具难以直接评估移植胰岛随时间的存活能力。正电子发射断层扫描(PET)作为一种重要的非侵入性方法,具有高灵敏度和良好分辨率,能够准确检测活生物体中紊乱的生化过程和生理异常。胰岛的成功PET成像将能够定位移植胰岛在肝脏中植入的特定部位,并量化随时间仍存活且功能正常的胰岛水平。这些信息对于建立和评估胰岛移植的效率至关重要。已经开发了许多新型成像剂以提高PET胰岛成像的灵敏度和特异性。在本文中,我们总结了用于胰腺胰岛细胞PET成像的碳-11、氟-18、铜-64和镓-68标记放射性配体的最新进展。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3091/5039672/2944f79ee8af/WJR-8-764-g001.jpg

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