Strebl Martin G, Yang Jane, Isaacs Lyle, Hooker Jacob M
1 Athinoula A. Martinos Center for Biomedical Imaging, Massachusetts General Hospital and Harvard Medical School, Charlestown, MA, USA.
2 Department of Chemistry and Biochemistry, University of Maryland, College Park, MD, USA.
Mol Imaging. 2018 Jan-Dec;17:1536012118799838. doi: 10.1177/1536012118799838.
Positron emission tomography (PET) imaging with biological macromolecules greatly expands the possibilities of molecular imaging. There are, however, practical aspects limiting the potential of the approach, including the dosimetric consequences of the slow kinetics of radiolabeled biomacromolecules. Pretargeting strategies have led to impactful improvements in the field but are themselves limited by shortcomings of available bioconjugation methodology. We report our initial findings concerning the suitability of the adamantane/cucurbit[7]uril system for pretargeted immuno-PET imaging and provide proof-of-concept PET/computed tomography imaging experiments to establish the stability and rapid formation of host-guest complexes in vivo. The adamantane/cucurbit[7]uril system itself without antibody conjugation has shown remarkably fast association kinetics and clearance in vivo. We further demonstrate the modulation of biodistribution achievable by cucurbituril complexation with relevance for pharmaceutical formulation as well as the radiosynthetic access to relevant reporter molecules labeled with C or F. This work, an early proof-of-concept, supports the notion that the adamantane/cucurbit[7]uril system warrants further exploration in pretargeted PET imaging applications.
使用生物大分子的正电子发射断层扫描(PET)成像极大地扩展了分子成像的可能性。然而,实际情况限制了该方法的潜力,包括放射性标记生物大分子动力学缓慢带来的剂量学后果。预靶向策略在该领域带来了显著改进,但自身也受到现有生物共轭方法缺点的限制。我们报告了关于金刚烷/葫芦[7]脲系统用于预靶向免疫PET成像适用性的初步研究结果,并提供了概念验证PET/计算机断层扫描成像实验,以确定体内主客体复合物的稳定性和快速形成。未与抗体偶联的金刚烷/葫芦[7]脲系统本身在体内显示出非常快的结合动力学和清除率。我们进一步证明了葫芦脲络合可实现生物分布的调节,这与药物制剂相关,以及对用碳或氟标记的相关报告分子的放射性合成途径。这项早期概念验证工作支持这样一种观点,即金刚烷/葫芦[7]脲系统在预靶向PET成像应用中值得进一步探索。