Department of Radiology, University of Pennsylvania, Philadelphia, PA 19104, USA.
Bioorg Med Chem Lett. 2011 Dec 1;21(23):6992-5. doi: 10.1016/j.bmcl.2011.09.124. Epub 2011 Oct 5.
We have developed a novel F-18 prosthetic ligand named fluoro-PEG-benzaldehyde (FPBA) 1. [(18)F]-FPBA 1 is formed in situ from its radiolabeled precursor [(18)F]6. Compound 6 is efficiently synthesized in four steps starting from commercially available 6-bromo-3-pyridine carbaldehyde 2. [(18)F]-FPBA was evaluated as a prosthetic ligand to radiolabel three cyclic peptides bearing an aminooxy functional group at the N-terminus position. Acetal [(18)F]6 is purified by either solid-phase extraction (SPE) or reverse-phase HPLC with the overall radiochemical yields (RCY) and radiochemical purity (RCP) in very close agreement. The SPE purification process has the advantage of shorter reaction times (71-87 min for entire reaction sequence), while the use of the reverse-phase HPLC purification process allows the use of up to fifty times less of the expensive synthetic peptides (~ 50 nmol) in the oxime coupling reaction. We have demonstrated an efficient methodology in the production of [(18)F]-FPBA 1 and demonstrated its use as a prosthetic ligand for the labeling of peptides possessing an aminooxy functional group.
我们开发了一种新型的 F-18 假肢配体,名为氟代-PEG-苯甲醛(FPBA)1。[(18)F]-FPBA 1 由其放射性标记前体[(18)F]6 就地形成。化合物 6 可从商业可得的 6-溴-3-吡啶甲醛 2 出发,通过四步反应高效合成。[(18)F]-FPBA 被评估为一种假肢配体,用于放射性标记三个在 N 末端位置带有氨基氧基官能团的环状肽。乙缩醛[(18)F]6 可以通过固相萃取(SPE)或反相 HPLC 进行纯化,其总放射性化学收率(RCY)和放射性化学纯度(RCP)非常接近。SPE 纯化过程的优点是反应时间更短(整个反应序列为 71-87 分钟),而使用反相 HPLC 纯化过程可以在肟偶联反应中使用多达五十倍的昂贵合成肽(约 50 nmol)。我们已经证明了在生产[(18)F]-FPBA 1 方面的有效方法,并证明了其作为具有氨基氧基官能团的肽的标记配体的用途。