Eleni Gourni, Luigi Del Pozzo, Mark Bartholomä, Yvonne Kiefer, Philipp T Meyer, Helmut R Maecke, Jason P Holland
{"title":"针对前列腺特异性膜抗原的68ga -去铁胺放射性示踪剂的放射化学和临床前PET成像。","authors":"Eleni Gourni, Luigi Del Pozzo, Mark Bartholomä, Yvonne Kiefer, Philipp T Meyer, Helmut R Maecke, Jason P Holland","doi":"10.1177/1536012117737010","DOIUrl":null,"url":null,"abstract":"<p><p>Radiotracers incorporating the urea-based Glu-NH-C(O)-NH-Lys group have gained prominence due to their role in targeting prostate-specific membrane antigen (PSMA)-a clinical biomarker of prostate cancer. Here, the synthesis, radiolabeling, and in vitro and in vivo characterization of two <sup>68</sup>Ga-radiolabeled Glu-NH-C(O)-NH-Lys radiotracers conjugated to the desferrioxamine B (DFO) chelate were evaluated. Two linker groups based on amide bond and thiourea coupling chemistries were employed to develop <sup>68</sup>Ga-DFO-Nsucc-PSMA (<sup>68</sup>Ga-4) and <sup>68</sup>Ga-DFO- pNCS-Bn-PSMA (<sup>68</sup>Ga-7), respectively. Radiosynthesis proceeded quantitatively at room temperature with high radiochemical yields, chemical/radiochemical purities, and specific activities. Pharmacokinetic profiles of <sup>68</sup>Ga-4 and <sup>68</sup>Ga-7 were assessed using positron-emission tomography (PET) in mice bearing subcutaneous LNCaP tumors. Data were compared to the current clinical benchmark radiotracer <sup>68</sup>Ga-HBED-CC-PSMA (<sup>68</sup>Ga-1) (HBED = N,N'-Bis(2-hydroxy-5-(ethylene-beta-carboxy)benzyl)ethylenediamine N,N'-diacetic acid). Results indicated that the target binding affinity, protein association, blood pool and background organ clearance properties, and uptake in PSMA-positive lesions are strongly dependent on the nature of the chelate, the linker, and the spacer groups. Protein dissociation constants ( K<sub>d</sub> values) were found to be predictive of pharmacokinetics in vivo. Compared to <sup>68</sup>Ga-1, <sup>68</sup>Ga-4 and <sup>68</sup>Ga-7 resulted in decreased tumor uptake but enhanced blood pool clearance and reduced residence time in the kidney. The study highlights the importance of maximizing protein binding affinity during radiotracer optimization.</p>","PeriodicalId":18855,"journal":{"name":"Molecular Imaging","volume":"16 ","pages":"1536012117737010"},"PeriodicalIF":2.2000,"publicationDate":"2017-01-01","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"https://sci-hub-pdf.com/10.1177/1536012117737010","citationCount":"15","resultStr":"{\"title\":\"Radiochemistry and Preclinical PET Imaging of <sup>68</sup>Ga-Desferrioxamine Radiotracers Targeting Prostate-Specific Membrane Antigen.\",\"authors\":\"Eleni Gourni, Luigi Del Pozzo, Mark Bartholomä, Yvonne Kiefer, Philipp T Meyer, Helmut R Maecke, Jason P Holland\",\"doi\":\"10.1177/1536012117737010\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"<p><p>Radiotracers incorporating the urea-based Glu-NH-C(O)-NH-Lys group have gained prominence due to their role in targeting prostate-specific membrane antigen (PSMA)-a clinical biomarker of prostate cancer. Here, the synthesis, radiolabeling, and in vitro and in vivo characterization of two <sup>68</sup>Ga-radiolabeled Glu-NH-C(O)-NH-Lys radiotracers conjugated to the desferrioxamine B (DFO) chelate were evaluated. Two linker groups based on amide bond and thiourea coupling chemistries were employed to develop <sup>68</sup>Ga-DFO-Nsucc-PSMA (<sup>68</sup>Ga-4) and <sup>68</sup>Ga-DFO- pNCS-Bn-PSMA (<sup>68</sup>Ga-7), respectively. Radiosynthesis proceeded quantitatively at room temperature with high radiochemical yields, chemical/radiochemical purities, and specific activities. Pharmacokinetic profiles of <sup>68</sup>Ga-4 and <sup>68</sup>Ga-7 were assessed using positron-emission tomography (PET) in mice bearing subcutaneous LNCaP tumors. Data were compared to the current clinical benchmark radiotracer <sup>68</sup>Ga-HBED-CC-PSMA (<sup>68</sup>Ga-1) (HBED = N,N'-Bis(2-hydroxy-5-(ethylene-beta-carboxy)benzyl)ethylenediamine N,N'-diacetic acid). Results indicated that the target binding affinity, protein association, blood pool and background organ clearance properties, and uptake in PSMA-positive lesions are strongly dependent on the nature of the chelate, the linker, and the spacer groups. Protein dissociation constants ( K<sub>d</sub> values) were found to be predictive of pharmacokinetics in vivo. Compared to <sup>68</sup>Ga-1, <sup>68</sup>Ga-4 and <sup>68</sup>Ga-7 resulted in decreased tumor uptake but enhanced blood pool clearance and reduced residence time in the kidney. 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Radiochemistry and Preclinical PET Imaging of 68Ga-Desferrioxamine Radiotracers Targeting Prostate-Specific Membrane Antigen.
Radiotracers incorporating the urea-based Glu-NH-C(O)-NH-Lys group have gained prominence due to their role in targeting prostate-specific membrane antigen (PSMA)-a clinical biomarker of prostate cancer. Here, the synthesis, radiolabeling, and in vitro and in vivo characterization of two 68Ga-radiolabeled Glu-NH-C(O)-NH-Lys radiotracers conjugated to the desferrioxamine B (DFO) chelate were evaluated. Two linker groups based on amide bond and thiourea coupling chemistries were employed to develop 68Ga-DFO-Nsucc-PSMA (68Ga-4) and 68Ga-DFO- pNCS-Bn-PSMA (68Ga-7), respectively. Radiosynthesis proceeded quantitatively at room temperature with high radiochemical yields, chemical/radiochemical purities, and specific activities. Pharmacokinetic profiles of 68Ga-4 and 68Ga-7 were assessed using positron-emission tomography (PET) in mice bearing subcutaneous LNCaP tumors. Data were compared to the current clinical benchmark radiotracer 68Ga-HBED-CC-PSMA (68Ga-1) (HBED = N,N'-Bis(2-hydroxy-5-(ethylene-beta-carboxy)benzyl)ethylenediamine N,N'-diacetic acid). Results indicated that the target binding affinity, protein association, blood pool and background organ clearance properties, and uptake in PSMA-positive lesions are strongly dependent on the nature of the chelate, the linker, and the spacer groups. Protein dissociation constants ( Kd values) were found to be predictive of pharmacokinetics in vivo. Compared to 68Ga-1, 68Ga-4 and 68Ga-7 resulted in decreased tumor uptake but enhanced blood pool clearance and reduced residence time in the kidney. The study highlights the importance of maximizing protein binding affinity during radiotracer optimization.
Molecular ImagingBiochemistry, Genetics and Molecular Biology-Biotechnology
自引率
3.60%
发文量
21
期刊介绍:
Molecular Imaging is a peer-reviewed, open access journal highlighting the breadth of molecular imaging research from basic science to preclinical studies to human applications. This serves both the scientific and clinical communities by disseminating novel results and concepts relevant to the biological study of normal and disease processes in both basic and translational studies ranging from mice to humans.