首页> 外文期刊>Peptides: An International Journal >Synthesis, radiolabeling and biological evaluation of a neutral tripeptide and its derivatives for potential nuclear medicine applications.
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Synthesis, radiolabeling and biological evaluation of a neutral tripeptide and its derivatives for potential nuclear medicine applications.

机译:中性三肽及其衍生物的合成,放射性标记和生物学评估,可用于潜在的核医学应用。

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Peptides are important regulators of growth and cellular functions not only in normal tissue but also in tumors. So they are becoming radioligands of increasing interest in nuclear oncology for targeted tumor diagnosis and therapy. So development of new peptide radiopharmaceuticals is becoming one of the most important areas in nuclear medicine research. A small tripeptide derivative NH(2)PhePheCys was synthesized by Fmoc solid phase peptide synthesis using an automated synthesizer. The oxidized form, i.e. NH(2)PhePheCysCysPhePheNH(2,) was also prepared by iodine oxidation method from NH(2)PhePheCys(ACM). The ligands were analyzed by HPLC and mass spectroscopy. They were radiolabeled with (99m)Tc using SnCl(2). In vitro analytical studies and biological characterizations were performed using the peptide radiopharmaceuticals. Images taken under gamma camera showed very high uptake in the liver, lung and spleen. Significant uptake was also observed in bone marrow and brain for (99m)Tc-NH(2)PhePheCys. Metabolites were produced in vivo when the radiopharmaceuticals were injected intravenously and were identified from rat brain and liver homogenate studies. Clearance through kidney did not show any evidence of breaking of the labeled compounds and formation of free (99m)Tc. Radiopharmaceuticals prepared using tripeptide and hexapeptide ligands were transported into the brain through blood brain barrier depending on the size and sequence characteristics. Using this property of peptide new derivatives can be prepared to develop (99m)Tc radiopharmaceuticals for imaging normal brain tissues as well as for diagnosing various brain disorders.
机译:肽不仅在正常组织中而且在肿瘤中都是重要的生长和细胞功能调节剂。因此,它们正成为对核肿瘤学进行靶向肿瘤诊断和治疗越来越感兴趣的放射性配体。因此,新型肽放射性药物的开发正成为核医学研究中最重要的领域之一。小三肽衍生物NH(2)PhePheCys通过使用自动合成器的Fmoc固相肽合成来合成。氧化形式即NH(2)PhePheCysCysPhePheNH(2)也通过碘氧化法从NH(2)PhePheCys(ACM)中制备。通过HPLC和质谱分析配体。使用SnCl(2)将它们放射性标记为(99m)Tc。使用肽放射性药物进行了体外分析研究和生物学表征。用伽马相机拍摄的图像显示肝脏,肺和脾脏的摄取量很高。 (99m)Tc-NH(2)PhePheCys在骨髓和大脑中也观察到大量摄取。静脉注射放射性药物时体内产生代谢物,并从大鼠脑和肝匀浆研究中鉴定出。通过肾脏清除未显示任何标记化合物断裂和游离(99m)Tc形成的证据。使用三肽和六肽配体制备的放射性药物通过血脑屏障转运到大脑中,具体取决于大小和序列特征。利用肽的这种特性,可以制备新的衍生物来开发(99m)Tc放射性药物,以对正常的脑组织成像以及诊断各种脑部疾病。

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