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高效生物缀合 5-氟-5-脱氧核糖(FDR)至 RGD 肽用于 α(v)β(3)整合素受体的正电子发射断层扫描(PET)成像。

Efficient bioconjugation of 5-fluoro-5-deoxy-ribose (FDR) to RGD peptides for positron emission tomography (PET) imaging of α(v)β(3) integrin receptor.

机构信息

John Mallard Scottish PET Centre, School of Medical Sciences, University of Aberdeen, Foresterhill, Aberdeen, AB25 2ZD, UK.

出版信息

Org Biomol Chem. 2013 Jul 21;11(27):4551-8. doi: 10.1039/c3ob40550h.

Abstract

The utility of 5-fluoro-5-deoxyribose (FDR) as an efficient bioconjugation agent for radiolabelling of the RGD peptides c(RGDfK) and c(RGDfC) is demonstrated. The bioconjugation is significantly superior to that achieved with 2-fluoro-2-deoxyglucose (FDG) and benefits from the location of the fluorine at C-5, and that ribose is a 5-membered ring sugar rather than a 6-membered ring. Both features favour ring opening to the aldehydic form of the sugar to promote smooth oxime ligation with aminooxy ether functionalised peptides. [(18)F]FDR was prepared in this study by synthesis from fluoride-18 using an automated synthesis protocol adapting that used routinely for [(18)F]FDG. c(RGDfK) was functionalised with an aminooxyacetyl group (Aoa) via its lysine terminus, while c(RGDfC) was functionalised with an aminooxyhexylmaleimide (Ahm) through a cysteine-maleimide conjugation. Bioconjugation of [(18)F]FDR to c(RGDfC)-Ahm proved to be more efficient than c(RGDfK)-Aoa (92% versus 65%). The unlabelled ((19)F) bioconjugates c(RGDfK)-Aoa-FDR and c(RGDfC)-Ahm-FDR were prepared and their in vitro affinity to purified integrin αvβ3 was determined. c(RGDfK)-Aoa-FDR showed the greater affinity. Purified "hot" bioconjugates c(RGDfK)-Aoa-[(18)F]FDR and c(RGDfC)-Ahm-[(18)F]FDR were assayed by incubation with MCF7, LNCaP and PC3 cell lines. In both cases the conjugated RGD peptides showed selectivity for PC3 cells, which express αvβ3 integrin, with the c(RGDfK)-Aoa-[(18)F]FDR demonstrating better binding, consistent with its higher in vitro affinity. The study demonstrates that [(18)F]FDR is an efficient bioconjugation ligand for RGD bioactive peptides.

摘要

5-氟-5-脱氧核糖(FDR)作为一种有效的生物缀合试剂,用于放射性标记 RGD 肽 c(RGDfK)和 c(RGDfC),其效用得到了证明。与 2-氟-2-脱氧葡萄糖(FDG)相比,这种生物缀合具有明显的优势,并且得益于氟原子位于 C-5 位置,以及核糖是一个五元环糖而不是一个六元环。这两个特征都有利于糖环打开到醛形式,以促进与氨基氧基醚功能化肽的肟顺利连接。[(18)F]FDR 是通过从氟-18 合成制备的,使用了一种自动化合成方案,该方案适应了常规用于[(18)F]FDG 的方案。c(RGDfK)通过其赖氨酸末端被氨基乙酰基(Aoa)官能化,而 c(RGDfC)通过半胱氨酸-马来酰亚胺连接被氨基氧基己基马来酰亚胺(Ahm)官能化。[(18)F]FDR 与 c(RGDfC)-Ahm 的生物缀合被证明比 c(RGDfK)-Aoa 更有效(92%比 65%)。制备了未标记的((19)F)生物缀合物 c(RGDfK)-Aoa-FDR 和 c(RGDfC)-Ahm-FDR,并测定了它们对纯化整合素αvβ3的体外亲和力。c(RGDfK)-Aoa-FDR 显示出更大的亲和力。纯化的“热”生物缀合物 c(RGDfK)-Aoa-[(18)F]FDR 和 c(RGDfC)-Ahm-[(18)F]FDR 与 MCF7、LNCaP 和 PC3 细胞系进行孵育,并用这些方法进行了检测。在这两种情况下,连接的 RGD 肽都表现出对表达αvβ3 整合素的 PC3 细胞的选择性,其中 c(RGDfK)-Aoa-[(18)F]FDR 显示出更好的结合,这与其更高的体外亲和力一致。该研究表明,[(18)F]FDR 是 RGD 生物活性肽的一种有效的生物缀合配体。

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