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在实验性诱导炎症的小鼠中,用原胸腺素α C末端的锝放射性标记衍生物进行体内生物分布和成像研究。

In vivo biodistribution and imaging studies with a Tc-radiolabeled derivative of the C-terminus of prothymosin alpha in mice bearing experimentally-induced inflammation.

作者信息

Karachaliou Chrysoula-Evangelia, Triantis Charalampos, Liolios Christos, Palamaris Lazaros, Zikos Christos, Tsitsilonis Ourania E, Kalbacher Hubert, Voelter Wolfgang, Loudos George, Papadopoulos Minas, Pirmettis Ioannis, Livaniou Evangelia

机构信息

Institute of Nuclear and Radiological Sciences and Technology, Energy and Safety (INRASTES), National Center for Scientific Research "Demokritos" (NCSR "Demokritos"), Athens 15310, Greece.

Department of Medical Instruments Technology, Technological Educational Institute, Athens 12243, Greece.

出版信息

Eur J Pharm Biopharm. 2017 Apr;113:188-197. doi: 10.1016/j.ejpb.2016.12.028. Epub 2017 Jan 11.

Abstract

Prothymosin alpha (ProTα) is a highly conserved mammalian polypeptide (109 amino acids in man) exerting in vitro and in vivo immunoenhancing activities. Recently, our team has developed a Tc-radiolabeled derivative of the C-terminal bioactive decapeptide of ProTα ([Tc]C1) and employed it in in vitro studies, the results of which support the existence of binding sites on human neutrophils that recognize [Tc]C1, intact ProTα as well as the C-terminal decapeptide of ProTα and presumably involve Toll-like receptor 4. In the present work, [Tc]C1 was administered to Swiss albino mice with experimentally-induced inflammation for in vivo biodistribution and imaging studies, in parallel with a suitable negative control, which differs from [Tc]C1 only in bearing a scrambled version of the ProTα decapeptide. The biodistribution data obtained with [Tc]C1 demonstrated fast clearance of radioactivity from blood, heart, lungs, normal muscle, and predominantly urinary excretion. Most importantly, slow clearance of radioactivity from the inflammation focus was observed, resulting in a high ratio of inflamed/normal muscle tissue (9.15 at 30min post injection, which remained practically stable up to 2h). The inflammation-targeting capacity of [Tc]C1 was confirmed by imaging studies and might be attributed to neutrophils, which are recruited at the inflamed areas and bear binding sites for [Tc]C1. In this respect, apart from being a valuable tool for further studies on ProTα in in vitro and in vivo systems, [Tc]C1 merits further evaluation as a radiopharmaceutical for specific imaging of inflammation foci.

摘要

前胸腺素α(ProTα)是一种高度保守的哺乳动物多肽(人类为109个氨基酸),在体外和体内均具有免疫增强活性。最近,我们团队开发了一种ProTα C末端生物活性十肽的锝放射性标记衍生物([Tc]C1),并将其用于体外研究,研究结果支持人类中性粒细胞上存在识别[Tc]C1、完整ProTα以及ProTα C末端十肽的结合位点,推测涉及Toll样受体4。在本研究中,将[Tc]C1给予实验性诱导炎症的瑞士白化小鼠,用于体内生物分布和成像研究,同时设置合适的阴性对照,该阴性对照与[Tc]C1的区别仅在于其携带ProTα十肽的乱序版本。用[Tc]C1获得的生物分布数据表明,放射性物质从血液、心脏、肺、正常肌肉中快速清除,且主要经尿液排泄。最重要的是,观察到放射性物质从炎症部位清除缓慢,导致炎症/正常肌肉组织的比值较高(注射后30分钟时为9.15,直至2小时基本保持稳定)。成像研究证实了[Tc]C1的炎症靶向能力,这可能归因于在炎症区域募集并带有[Tc]C1结合位点的中性粒细胞。在这方面,[Tc]C1除了是在体外和体内系统中进一步研究ProTα的有价值工具外,作为一种用于炎症病灶特异性成像的放射性药物,还值得进一步评估。

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