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使用有机三氟硼酸盐对生物分子进行一步法(¹⁸F)标记。

One-step (18)F labeling of biomolecules using organotrifluoroborates.

作者信息

Liu Zhibo, Lin Kuo-Shyan, Bénard François, Pourghiasian Maral, Kiesewetter Dale O, Perrin David M, Chen Xiaoyuan

机构信息

Laboratory of Molecular Imaging and Nanomedicine, National Institute of Biomedical Imaging and Bioengineering, National Institutes of Health, Bethesda, Maryland, USA.

Department of Molecular Oncology, British Columbia Cancer Agency, Vancouver, British Columbia, Canada.

出版信息

Nat Protoc. 2015 Sep;10(9):1423-32. doi: 10.1038/nprot.2015.090. Epub 2015 Aug 27.

Abstract

Herein we present a general protocol for the functionalization of biomolecules with an organotrifluoroborate moiety so that they can be radiolabeled with aqueous (18)F fluoride ((18)F(-)) and used for positron emission tomography (PET) imaging. Among the β(+)-emitting radionuclides, fluorine-18 ((18)F) is the isotope of choice for PET, and it is produced, on-demand, in many hospitals worldwide. Organotrifluoroborates can be (18)F-labeled in one step in aqueous conditions via (18)F-(19)F isotope exchange. This protocol features a recently designed ammoniomethyltrifluoroborate, and it describes the following: (i) a synthetic strategy that affords modular synthesis of radiolabeling precursors via a copper-catalyzed 'click' reaction; and (ii) a one-step (18)F-labeling method that obviates the need for HPLC purification. Within 30 min, (18)F-labeled PET imaging probes, such as peptides, can be synthesized in good chemical and radiochemical purity (>98%), satisfactory radiochemical yield of 20-35% (n > 20, non-decay corrected) and high specific activity of 40-111 GBq/μmol (1.1-3.0 Ci/μmol). The entire procedure, including the precursor preparation and (18)F radiolabeling, takes 7-10 d.

摘要

在此,我们提出了一种用有机三氟硼酸盐部分对生物分子进行功能化的通用方案,以便它们能用含水的(18)F氟化物((18)F⁻)进行放射性标记,并用于正电子发射断层扫描(PET)成像。在发射β⁺射线的放射性核素中,氟-18((18)F)是PET的首选同位素,并且在全球许多医院中按需生产。有机三氟硼酸盐可通过(18)F-(19)F同位素交换在水性条件下一步进行(18)F标记。该方案以最近设计的氨甲基三氟硼酸盐为特色,并描述了以下内容:(i)一种通过铜催化的“点击”反应实现放射性标记前体模块化合成的合成策略;以及(ii)一种无需高效液相色谱(HPLC)纯化的一步(18)F标记方法。在30分钟内,可以合成化学纯度和放射化学纯度良好(>98%)、放射化学产率令人满意(20-35%,n>20,未校正衰变)且比活度高(40-111 GBq/μmol,1.1-3.0 Ci/μmol)的(18)F标记的PET成像探针,如肽。整个过程,包括前体准备和(18)F放射性标记,需要7-10天。

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