Bhatt Jyotsna, Mukherjee Archana, Korde Aruna, Kumar Mukesh, Sarma Haladhar Dev, Dash Ashutosh
Radiopharmaceuticals Evaluation Section, Isotope Production & Applications Division, Bhabha Atomic Research Centre, Mumbai, 400 085, India.
Solid State Physics Division, Bhabha Atomic Research Centre (BARC), Mumbai, 400 085, India.
Mol Imaging Biol. 2017 Feb;19(1):59-67. doi: 10.1007/s11307-016-0983-4.
The present work was aimed at the development of prospective positron emission tomography (PET) agents for infection imaging. Towards this aim, ubiquicidin (UBI) fragments conjugated with the macrocyclic NODAGA chelator were radiolabeled with Ga-68 and evaluated.
Conformations of custom synthesized NODAGA-UBI (29-41) and NODAGA-UBI (31-38) conjugates were compared with UBI (29-41) by circular dichroism (CD) spectroscopy. Optimization of labeling of NODAGA conjugates of UBI peptides with Ga-68 was performed and quality control analysis was carried out by chromatography techniques. In vitro uptake of [Ga] NODAGA-UBI (29-41) and [Ga]NODAGA-UBI (31-38) was studied in Staphylococcus aureus cells. In vivo distribution of [Ga]GaCl and [Ga]NODAGA-UBI complexes was performed in normal Swiss mice.
Conformations of NODAGA-UBI (29-41) and NODAGA-UBI (31-38) conjugates were found to be similar to UBI (29-41). NODAGA-UBI conjugates could be consistently labeled with Ga-68 in high radiochemical yields (>95 %) with high radiochemical purity (>95 %). [Ga]NODAGA-UBI (29-41) and [Ga]NODAGA-UBI (31-38) complexes showed retention time of 14 and 14.5 min, respectively, by HPLC radiochromatogram. Specific uptake of [Ga]NODAGA-UBI fragments was observed in S.aureus cells. Greater than 64 % of the injected dose was cleared via the renal route at 1 h post injection, and no significant uptake in vital organs of mice was observed with both the agents.
This is the first report on Ga-68 labeled NODAGA-UBI fragments for infection imaging and the agents hold tremendous prospect in PET imaging.
本研究旨在开发用于感染成像的前瞻性正电子发射断层扫描(PET)剂。为实现这一目标,将与大环NODAGA螯合剂偶联的泛菌素(UBI)片段用Ga-68进行放射性标记并进行评估。
通过圆二色性(CD)光谱将定制合成的NODAGA-UBI(29-41)和NODAGA-UBI(31-38)偶联物的构象与UBI(29-41)进行比较。对UBI肽的NODAGA偶联物用Ga-68进行标记优化,并通过色谱技术进行质量控制分析。在金黄色葡萄球菌细胞中研究了[Ga]NODAGA-UBI(29-41)和[Ga]NODAGA-UBI(31-38)的体外摄取。在正常瑞士小鼠中进行了[Ga]GaCl和[Ga]NODAGA-UBI复合物的体内分布研究。
发现NODAGA-UBI(29-41)和NODAGA-UBI(31-38)偶联物的构象与UBI(29-41)相似。NODAGA-UBI偶联物可以以高放射化学产率(>95%)和高放射化学纯度(>95%)持续用Ga-68进行标记。通过HPLC放射色谱图,[Ga]NODAGA-UBI(29-41)和[Ga]NODAGA-UBI(31-38)复合物的保留时间分别为14分钟和14.5分钟。在金黄色葡萄球菌细胞中观察到[Ga]NODAGA-UBI片段的特异性摄取。注射后1小时,超过64%的注射剂量通过肾脏途径清除,两种药剂在小鼠重要器官中均未观察到明显摄取。
这是关于用于感染成像的Ga-68标记的NODAGA-UBI片段的首次报道,这些药剂在PET成像中具有巨大前景。