Boss Silvan D, Betzel Thomas, Müller Cristina, Fischer Cindy R, Haller Stephanie, Reber Josefine, Groehn Viola, Schibli Roger, Ametamey Simon M
Department of Chemistry and Applied Biosciences, Institute of Pharmaceutical Sciences, ETH Zurich , 8093 Zurich, Switzerland.
Center for Radiopharmaceutical Sciences ETH-PSI-USZ, Paul Scherrer Institute , 5232 Villigen, Switzerland.
Bioconjug Chem. 2016 Jan 20;27(1):74-86. doi: 10.1021/acs.bioconjchem.5b00644. Epub 2015 Dec 11.
The folate receptor (FR) is upregulated in various epithelial cancer types (FR α-isoform), while healthy tissues show only restricted expression. FR-targeted imaging using folate radiopharmaceuticals is therefore a promising approach for the detection of FR-positive cancer tissue. Almost all folate-based radiopharmaceuticals have been prepared by conjugation at the γ-carboxylic functionality of the glutamate moiety of folic acid. In this work, three pairs of fluorinated α- and γ-conjugated folate derivatives were synthesized and their in vitro and in vivo properties compared. The syntheses of all six regioisomers were obtained in good chemical yields using a multistep synthetic approach including the highly selective Cu(I)-catalyzed 1,3-dipolar cycloaddition. The radiosyntheses of the α- and γ-conjugated (18)F-labeled folate derivatives were accomplished in moderate to good radiochemical yields, high radiochemical purities (>95%), and specific activities ranging from 25 to 196 GBq/μmol. In vitro, all folate derivatives showed high binding affinity to the FR-α (IC50 = 1.4-2.2 nM). In vivo PET imaging and biodistribution studies in FR-positive KB tumor-bearing mice demonstrated similar FR-specific tumor uptake for both regioisomers of each pair of compounds. However, FR-unspecific liver uptake was significantly lower for the α-regioisomers compared to the corresponding γ-regioisomers. In contrast, kidney uptake was up to 50% lower for the γ-regioisomers than for the α-regioisomers. These results show that the site of conjugation in the glutamyl moiety of folic acid has a significant impact on the in vivo behavior of (18)F-based radiofolates, but not on their in vitro FR-binding affinity. These findings may potentially stimulate new directions for the design of novel (18)F-labeled folate-based radiotracers.
叶酸受体(FR)在多种上皮癌类型(FRα异构体)中上调,而健康组织仅表现出有限的表达。因此,使用叶酸放射性药物进行FR靶向成像对于检测FR阳性癌组织是一种有前景的方法。几乎所有基于叶酸的放射性药物都是通过在叶酸谷氨酸部分的γ-羧基官能团处进行缀合制备的。在这项工作中,合成了三对氟化的α-和γ-缀合叶酸衍生物,并比较了它们的体外和体内性质。使用包括高度选择性的Cu(I)催化的1,3-偶极环加成的多步合成方法,以良好的化学产率获得了所有六种区域异构体的合成。α-和γ-缀合的(18)F标记叶酸衍生物的放射性合成以中等至良好的放射化学产率、高放射化学纯度(>95%)以及25至196 GBq/μmol的比活度完成。在体外,所有叶酸衍生物对FR-α均表现出高结合亲和力(IC50 = 1.4 - 2.2 nM)。在携带FR阳性KB肿瘤的小鼠中进行的体内PET成像和生物分布研究表明,每对化合物的两种区域异构体具有相似的FR特异性肿瘤摄取。然而,与相应的γ-区域异构体相比,α-区域异构体的FR非特异性肝脏摄取明显更低。相反,γ-区域异构体的肾脏摄取比α-区域异构体低多达50%。这些结果表明,叶酸谷氨酸部分的缀合位点对基于(18)F的放射性叶酸的体内行为有显著影响,但对其体外FR结合亲和力没有影响。这些发现可能会为新型(18)F标记的基于叶酸的放射性示踪剂的设计激发新的方向。