Department of Patho-Functional Bioanalysis, Graduate School of Pharmaceutical Sciences, Kyoto University, 46-29, Yoshida Shimoadachi-cho, Sakyo-ku, Kyoto, 606-8501, Japan.
Department of Diagnostic Imaging and Nuclear Medicine, Graduate School of Medicine, Kyoto University, 54 Shogoin-kawahara-cho, Sakyo-ku, Kyoto, 606-8507, Japan.
Sci Rep. 2021 Sep 21;11(1):18714. doi: 10.1038/s41598-021-98235-x.
Hydroxamamide (Ham) is a thiol-free chelating agent that forms technetium-99m (Tc)-complexes with a metal-to-ligand ratio of 1:2 under moderate reaction conditions. Therefore, Ham-based chelating agents will produce Tc-labeled compounds with a bivalent targeting scaffold. For their universal usage, we developed a novel Ham-based bifunctional chelating agent, "Ham-Mal", with a maleimide group that can easily conjugate with a thiol group, for to preparing Tc-labeled bivalent ligand probes. Ham-Mal was synthesized by a four-step reaction, and then reacted with cysteine or c(RGDfC) to produce Ham-Cys or Ham-RGD. These precursors were reacted with TcO for 10 min under room temperature to obtain Tc-(Ham-Cys) and Tc -(Ham-RGD). The cellular uptake level of Tc-(Ham-RGD) by U87MG (high Integrin ɑβ expression) cells was significantly higher than that by PC3 (low Integrin ɑβ expression) cells at 60 min after the incubation, and the uptake was significantly suppressed by pre-treatment for 15 min with excess c(RGDfK) peptide. In the in vivo study with U87MG/PC3 dual xenografted BALB/c-nu mice, the radioactivity of U87MG tumor tissue was significantly higher than that of PC3 tumor tissue at 360 min after the administration of Tc-(Ham-RGD). These results suggest Ham-Mal may have potential as a bifunctional chelating agent for Tc-labeled bivalent ligand probes.
羟胺(Ham)是一种不含巯基的螯合剂,在温和的反应条件下,它与金属的摩尔比为 1:2 形成 99m 锝(Tc)配合物。因此,Ham 基螯合剂将产生具有二价靶向支架的 Tc 标记化合物。为了广泛应用,我们开发了一种新型的 Ham 基双功能螯合剂“Ham-Mal”,它带有一个马来酰亚胺基团,可以很容易地与巯基结合,用于制备 Tc 标记的二价配体探针。Ham-Mal 通过四步反应合成,然后与半胱氨酸或 c(RGDfC)反应生成 Ham-Cys 或 Ham-RGD。这些前体在室温下与 TcO 反应 10 分钟,得到 Tc-(Ham-Cys)和 Tc-(Ham-RGD)。在孵育 60 分钟后,U87MG(高整合素αβ表达)细胞摄取 Tc-(Ham-RGD)的水平明显高于 PC3(低整合素αβ表达)细胞,用过量的 c(RGDfK)肽预处理 15 分钟可显著抑制摄取。在 U87MG/PC3 双异种移植 BALB/c-nu 小鼠的体内研究中,给药后 360 分钟,U87MG 肿瘤组织的放射性活度明显高于 PC3 肿瘤组织。这些结果表明,Ham-Mal 可能有潜力作为 Tc 标记的二价配体探针的双功能螯合剂。