Stephenson Karin A, Banerjee Sangeeta Ray, Sogbein Oyebola O, Levadala Murali K, McFarlane Nicole, Boreham Douglas R, Maresca Kevin P, Babich John W, Zubieta Jon, Valliant John F
Department of Chemistry, McMaster University, Hamilton, ON, Canada L8S 4M1.
Bioconjug Chem. 2005 Sep-Oct;16(5):1189-95. doi: 10.1021/bc0500591.
A new solid-phase synthetic methodology was developed that enables libraries of peptide-based Tc(I)/Re(I) radiopharmaceuticals to be prepared using a conventional automated peptide synthesizer. Through the use of a tridentate ligand derived from N-alpha-Fmoc-l-lysine, which we refer to as a single amino acid chelate (SAAC), a series of 12 novel bioconjugates [R-NH(CO)ZLF(SAAC)G, R = ethyl, isopropyl, n-propyl, tert-butyl, n-butyl, benzyl; Z = Met, Nle] that are designed to target the formyl peptide receptor (FPR) were prepared. Construction of the library was carried out in a multiwell format on an Advanced ChemTech 348 peptide synthesizer where multi-milligram quantities of each peptide were isolated in high purity without HPLC purification. After characterization, the library components were screened for their affinity for the FPR receptor using flow cytometry where the K(d) values were found to be in the low micromolar range (0.5-3.0 microM). Compound 5j was subsequently labeled with (99m)Tc(I) and the product isolated in high radiochemical yield using a simple Sep-Pak purification procedure. The retention time of the labeled compound matched that of the fully characterized Re-analogue which was prepared through the use of the same solid-phase synthesis methodology that was used to construct the library. The work reported here is a rare example of a method by which libraries of peptide-ligand conjugates and their rhenium complexes can be prepared.
开发了一种新的固相合成方法,该方法能够使用传统的自动肽合成仪制备基于肽的锝(Tc)(I)/铼(Re)(I)放射性药物库。通过使用源自N-α-Fmoc-L-赖氨酸的三齿配体(我们称之为单氨基酸螯合物(SAAC)),制备了一系列12种新型生物共轭物[R-NH(CO)ZLF(SAAC)G,R = 乙基、异丙基、正丙基、叔丁基、正丁基、苄基;Z = 甲硫氨酸、正亮氨酸],这些生物共轭物旨在靶向甲酰肽受体(FPR)。该文库的构建在Advanced ChemTech 348肽合成仪上以多孔板形式进行,其中每种肽均以高纯度分离出多毫克量,无需进行HPLC纯化。表征后,使用流式细胞术筛选文库组分对FPR受体的亲和力,发现其解离常数(K(d))值处于低微摩尔范围(0.5 - 3.0 μM)。随后用(99m)Tc(I)标记化合物5j,并使用简单的Sep-Pak纯化程序以高放射化学产率分离产物。标记化合物的保留时间与通过使用与构建文库相同的固相合成方法制备的、经过充分表征的铼类似物的保留时间相匹配。本文报道的工作是一种能够制备肽 - 配体共轭物及其铼配合物库的方法的罕见实例。