首页> 美国卫生研究院文献>Theranostics >Lewis Acid-Assisted Isotopic 18F-19F Exchange in BODIPY Dyes: Facile Generation of Positron Emission Tomography/Fluorescence Dual Modality Agents for Tumor Imaging
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Lewis Acid-Assisted Isotopic 18F-19F Exchange in BODIPY Dyes: Facile Generation of Positron Emission Tomography/Fluorescence Dual Modality Agents for Tumor Imaging

机译:Lewis酸辅助的BODIPY染料中的同位素18F-19F交换:用于肿瘤成像的正电子发射断层扫描/荧光双模态试剂的便捷生成

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摘要

Positron emission tomography (PET) is a powerful technique for imaging biological pathways in vivo, particularly those that are key targets in disease processes. In contrast, fluorescence imaging has demonstrated to be a superior method for image-guided surgery, such as tumor removal. Although the integration of PET and optical imaging could provide an attractive strategy for patient management, there is a significant shortage of established platforms/methods for PET/optical probe construction. In this study, various reaction conditions were explored to develop a simple and fast method allowing for the introduction of [18F]-fluoride into BODIPY dyes. Through a systematic optimization of the reaction conditions, we found that BODIPY dyes, including commercial amine-reactive BODIPY succinimidyl esters, may be converted into their radioactive analogues in the matter of minutes via a 18F-19F isotopic exchange reaction promoted by a Lewis acid such as SnCl4. An integrin-targeting RGD peptide was also conjugated with [18F]BODIPY® R6G , derived from the commercially available BODIPY® R6G fluorescent tag, to provide a [18F]-RGD conjugate in 82% yield. In vivo evaluation of this imaging probe showed a discernible tumor uptake in the U87MG xenograft model. The dual modality imaging properties of the probe was confirmed by ex vivo fluorescence and microPET imaging experiments. In summary, in the matter of minutes, BODIPY dyes were converted into their “hot” radioactive analogues via a 18F-19F isotopic exchange reaction promoted by a Lewis acid. This approach, which can be applied to commercial BODIPY dyes, provides easy access to positron emission tomography/fluorescence dual modality imaging agents.
机译:正电子发射断层扫描(PET)是一项强大的技术,可对体内的生物路径进行成像,尤其是那些在疾病过程中成为关键目标的生物路径。相比之下,荧光成像已被证明是图像引导手术(例如肿瘤切除术)的一种出色方法。尽管PET和光学成像的集成可以为患者管理提供有吸引力的策略,但是仍然严重缺乏用于PET /光学探头构造的已建立平台/方法。在这项研究中,探索了各种反应条件以开发一种简单快速的方法,该方法允许将[ 18 F]-氟化物引入BODIPY染料中。通过对反应条件的系统优化,我们发现BODIPY染料,包括商业上与胺反应的BODIPY琥珀酰亚胺酯,可以在几分钟内通过 18 F- 19 F同位素交换反应。还将靶向整合素的RGD肽与衍生自市售BODIPY®R6G荧光标签的[ 18 F]BODIPY®R6G偶联,以提供[ 18 F] -RGD共轭物,产率82%。对该成像探针的体内评估显示在U87MG异种移植模型中可识别的肿瘤摄取。探针的双模态成像特性通过离体荧光和microPET成像实验得到证实。总之,在几分钟内,通过路易斯酸促进的 18 F- 19 F同位素交换反应,BODIPY染料被转化为“热”放射性类似物。这种方法可应用于商业BODIPY染料,可轻松获得正电子发射断层扫描/荧光双模态成像剂。

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