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首页> 外文期刊>Journal of Medicinal Chemistry >(64)~Cu-Labeled Somatostatin Analogues Conjugated with Cross-Bridged Phosphonate-Based Chelators via Strain-Promoted Click Chemistry for PET Imaging:In silico through in Vivo Studies
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(64)~Cu-Labeled Somatostatin Analogues Conjugated with Cross-Bridged Phosphonate-Based Chelators via Strain-Promoted Click Chemistry for PET Imaging:In silico through in Vivo Studies

机译:(64)〜Cu标记的生长抑素类似物与跨桥膦酸酯螯合剂通过应变促进的Click化学结合以用于PET成像:计算机模拟到体内研究

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Somatostatin receptor subtype 2 (sstr2) is a G-protein-coupled receptor (GPCR) that is overexpressed in neuroendocrine tumors. The homology model of sstr2 was built and was used to aid the design of new somatostatin analogues modified with phosphonate-containing cross-bridged chelators for evaluation of using them as PET imaging radiopharmaceuticals. The new generation chelators were conjugated to Tyr~3-octreotate (Y3-TATE) through bioorthogonal, strain-promoted alkyne azide cycloaddition (SPAAC) to form CBTE1A1P-DBCO-Y3-TATE (AP) and CB-TE1K1P-PEG4-DBCO-Y3-TATE (KP) in improved yields compared to standard direct conjugation methods of amide bond formation. Consistent with docking studies, the clicked bioconjugates showed high binding affinities to sstr2, with K_d values ranging from 0.6 to 2.3 nM. Selected isomers of the clicked products were used in biodistribution and PET/CT imaging. Introduction of the bulky dibenzocyclooctyne group in AP decreased clearance rates from circulation. However, the additional carboxylate group and PEG linker from the KP conjugate significantly improved labeling conditions and in vivo stability of the copper complex and ameliorated the slower pharmacokinetics of the clicked somatostatin analogues.
机译:生长抑素受体亚型2(sstr2)是一种G蛋白偶联受体(GPCR),在神经内分泌肿瘤中过表达。建立了sstr2的同源性模型,并将其用于协助设计新的生长抑素类似物,该类似物被含膦酸酯的交叉桥螯合剂修饰,用于评估将其用作PET成像放射性药物。通过生物正交的,应变促进的炔叠氮化物环加成反应(SPAAC)将新一代的螯合剂与Tyr〜3-奥曲肽(Y3-TATE)偶联,形成CBTE1A1P-DBCO-Y3-TATE(AP)和CB-TE1K1P-PEG4-DBCO-与标准的直接形成酰胺键的共轭方法相比,Y3-TATE(KP)的产率更高。与对接研究一致,单击的生物偶联物显示出对sstr2的高结合亲和力,K_d值在0.6到2.3 nM之间。单击产品的选定异构体用于生物分布和PET / CT成像。 AP中引入笨重的二苯并环辛炔基会降低循环清除率。然而,来自KP缀合物的额外的羧酸根基团和PEG接头显着改善了铜复合物的标记条件和体内稳定性,并改善了所单击的生长抑素类似物的较慢的药代动力学。

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