Institute of Organic Chemistry and Biochemistry of the Czech Academy of Sciences, Flemingovo náměstí 542/2, 160 00, Prague 6, Czech Republic.
Faculty of Science, Department of Organic Chemistry, Charles University Praha 2, Albertov 6, 12800, Prague, Czech Republic.
Angew Chem Int Ed Engl. 2024 Nov 25;63(48):e202409520. doi: 10.1002/anie.202409520. Epub 2024 Oct 14.
Perfusion dynamics play a vital role in delivering essential nutrients and oxygen to tissues while removing metabolic waste products. Imaging techniques such as magnetic resonance imaging (MRI), computed tomography (CT), and positron emission tomography (PET) use contrast agents to visualize perfusion and clearance patterns; however, each technique has specific limitations. Hybrid PET/MRI combines the quantitative power and sensitivity of PET with the high functional and anatomical detail of MRI and holds great promise for precision in molecular imaging. However, the development of dual PET/MRI probes has been hampered by challenging synthesis and radiolabeling. Here, we present a novel PET/MRI probe, [F][Gd(FL)], which exhibits excellent stability comparable to macrocyclic MRI contrast agents used in clinical practice. The unique molecular design of [F][Gd(FL)] allows selective and expeditious radiolabeling of the gadolinium chelate in the final synthetic step. Leveraging the strengths of MRI and PET signals, the probe enables quantitative in vivo mapping of perfusion and excretion dynamics through an innovative voxel-based analysis. The diagnostic capabilities of [F][Gd(FL)] were demonstrated in a pilot study on healthy mice, successfully detecting early cases of unilateral renal dysfunction, a condition that is typically challenging to diagnose. This study introduces a new approach for PET/MRI and emphasizes a streamlined probe design for practical synthesis and improved diagnostic accuracy.
灌注动力学在向组织输送必需的营养物质和氧气的同时清除代谢废物方面起着至关重要的作用。成像技术,如磁共振成像(MRI)、计算机断层扫描(CT)和正电子发射断层扫描(PET),使用对比剂来可视化灌注和清除模式;然而,每种技术都有其特定的局限性。混合 PET/MRI 将 PET 的定量和敏感性与 MRI 的高功能和解剖细节相结合,为分子成像的精确性提供了巨大的前景。然而,双 PET/MRI 探针的发展受到挑战性的合成和放射性标记的阻碍。在这里,我们提出了一种新型的 PET/MRI 探针,[F][Gd(FL)],它表现出与临床实践中使用的大环 MRI 造影剂相当的优异稳定性。[F][Gd(FL)]的独特分子设计允许在最后一步的合成中选择性和迅速地标记钆螯合物。利用 MRI 和 PET 信号的优势,该探针通过创新的体素基分析实现了灌注和排泄动力学的定量体内映射。在一项对健康小鼠的初步研究中,证明了[F][Gd(FL)]的诊断能力,成功检测到单侧肾功能障碍的早期病例,这种情况通常难以诊断。这项研究为 PET/MRI 引入了一种新方法,并强调了简化的探针设计,以实现实际的合成和提高诊断准确性。