首页> 外文期刊>The Journal of Nuclear Medicine >99mTc-labeled duramycin as a novel phosphatidylethanolamine-binding molecular probe.
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99mTc-labeled duramycin as a novel phosphatidylethanolamine-binding molecular probe.

机译:99mTc标记的杜拉霉素作为新型磷脂酰乙醇胺结合分子探针。

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摘要

With only 19 amino acids, duramycin is the smallest known polypeptide that has a defined 3-dimensional binding structure. Duramycin binds phosphatidylethanolamine (PtdE) at a 1:1 ratio with high affinity and exclusive specificity. As an abundant binding target, PtdE is a major phospholipid and accounts for about 20% of the phospholipid content in mammalian cellular membranes. PtdE is externalized to the surface of apoptotic cells and also becomes accessible in necrotic cells because of compromised plasma membrane integrity. Given the unique physicochemical properties of duramycin and the availability of PtdE in acute cell death, the goal of this study was to develop and evaluate 99mTc-duramycin as a novel molecular probe for imaging PtdE. METHODS: Duramycin is covalently modified with succinimidyl 6-hydrazinonicotinate acetone hydrazone (HYNIC) and labeled with 99mTc using a coordination chemistry involving tricine-phosphine coligands. The retention of PtdE-binding activities was confirmed using competition assays with PtdE-containing liposomes. The blood clearance, pharmacokinetics, and biodistribution of 99mTc-duramycin were measured in rats. Finally, 99mTc-duramycin binding to acute cell death in vivo was demonstrated using a rat model of acute myocardial infarction induced by ischemia and reperfusion and confirmed using autoradiography and histology. RESULTS: HYNIC-derivatized duramycin with 1:1 stoicheometry was synthesized and confirmed by mass spectrometry. The radiolabeling efficiency was 80%-85%, radiochemical purity was 78%-89%, and specific activity was 54 GBq. The radiotracer was purified with high-performance liquid chromatography radiodetection before use. The specific uptake of 99mTc-duramycin in apoptotic cells, compared with that in viable control cells, was enhanced by more than 30-fold. This binding was competitively diminished in the presence of PtdE-containing liposomes but not by liposomes consisting of other phospholipid species. Intravenously injected 99mTc-duramycin has favorable pharmacokinetic and biodistribution profiles: it quickly clears from the circulation via the renal system, with a blood half-life of less than 4 min in rats. The hepatic and gastrointestinal uptake were very low. 99mTc-duramycin is completely unmetabolized in vivo, and the intact agent is recovered from the urine. Combined with a fast clearance and low hepatic background, the avid binding of 99mTc-duramycin to the infarcted myocardium quickly becomes conspicuous shortly after injection. The uptake of radioactivity in infarcted tissues was confirmed by autoradiography and histology. CONCLUSION: 99mTc-duramycin is a stable, low-molecular-weight PtdE-binding radiopharmaceutical, with favorable in vivo imaging profiles. It is a strong candidate as a molecular probe for PtdE imaging and warrants further development and characterization.
机译:杜拉霉素只有19个氨基酸,是已知的具有定义的3维结合结构的最小的多肽。杜拉霉素以高亲和力和排他性特异性以1:1的比例结合磷脂酰乙醇胺(PtdE)。作为丰富的结合靶标,PtdE是主要的磷脂,约占哺乳动物细胞膜中磷脂含量的20%。由于受损的质膜完整性,PtdE外在凋亡细胞表面,并且在坏死细胞中也可接近。鉴于杜拉霉素独特的理化特性和PtdE在急性细胞死亡中的可用性,本研究的目标是开发和评估99mTc-杜拉霉素作为一种新型的成像PtdE的分子探针。方法:将杜拉霉素与琥珀酰亚胺基6-肼基烟酸酯丙酮(HYNIC)进行共价修饰,并使用涉及三氢膦膦大分子的配位化学标记为99mTc。使用含有PtdE的脂质体进行竞争测定法确认了PtdE结合活性的保留。在大鼠中测量了99mTc-杜拉霉素的血液清除率,药代动力学和生物分布。最后,使用由缺血和再灌注诱导的急性心肌梗死大鼠模型证明了99mTc-杜拉霉素在体内与急性细胞死亡结合,并通过放射自显影和组织学证实。结果:合成了HYNIC衍生的杜拉霉素,化学计量比为1:1。放射标记效率为80%-85%,放射化学纯度为78%-89%,比活为54 GBq。使用前,通过高效液相色谱放射检测纯化放射性示踪剂。与存活的对照细胞相比,凋亡细胞中99mTc-杜拉霉素的特异性摄取增加了30倍以上。在含有PtdE的脂质体存在下,这种结合竞争性地减弱了,但不是由其他磷脂种类组成的脂质体。静脉注射99mTc-杜拉霉素具有良好的药代动力学和生物分布特征:它可以通过肾脏系统从循环中迅速清除,在大鼠中的血液半衰期少于4分钟。肝和胃肠道摄取非常低。 99mTc-杜拉霉素在体内完全未代谢,并且从尿液中回收了完整的药物。结合快速清除和低肝本底,注射后不久,99mTc-杜拉霉素与梗死心肌的狂热结合迅速变得明显。放射自显影和组织学证实了梗塞组织中放射性的吸收。结论:99mTc-杜拉霉素是一种稳定的,低分子量的PtdE结合放射性药物,具有良好的体内成像特性。它非常适合作为PtdE成像的分子探针,并有待进一步开发和表征。

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