Assessing the biocompatibility and stability of CeO2 nanoparticle conjugates with azacrowns for use as radiopharmaceuticals.

IF 4.1 4区 医学 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY
Sofia Khabirova, Mikhail Menshikov-Tonyan, Gleb Aleshin, Anastasia Prikhodko, Daniil Kozlov, Evgeny Anokhin, Konstantin Babeshkin, Nikolay Titchenko, Anastasia Zubenko, Anna Shchukina, Yuri Fedorov, Stepan Kalmykov
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Abstract

The application of nanoparticles is promising for the purposes of nuclear medicine due to the possibilities of using them as vectors and transporters of radionuclides. In this study, we have successfully synthesised conjugates of CeO2 nanoparticles and azacrown ligands. Then, the radiolabelling conditions with radionuclides 65Zn, 44Sc and 207Bi were selected and the kinetic stability of the complexes in biologically significant media was evaluated. Optimum conditions for CeO2-APTES-L and CeO2-APTES-DOTA labelling were found: 0.1 g l-1 conjugate and 10-9 M metal cations at 90 °C for complexes with [65Zn]Zn2+, [44Sc]Sc3+ and [207Bi]Bi3+. CeO2-APTES-L-44Sc (radiochemical purity more than 90%) was stable in fetal bovine serum. The obtained results enabled us to choose the most promising complex for biomedical applications for carrying out in vitro and in vivo biodistribution research. Nanoceria and its derivative showed no obvious toxicity to human endothelial cells EA.hy926. Then, the in vivo stability of the studied scandium complex was demonstrated. Taken together, our studies show that functionalised cerium oxide nanoparticles lead to stable radiolabelled nanosystems that may be used for targeted drug delivery, diagnosis and treatment of oncological diseases.

评估二氧化 CeO2 纳米粒子与偶氮鸦片共轭物用作放射性药物的生物相容性和稳定性。
由于纳米粒子可以用作放射性核素的载体和运输工具,因此在核医学领域的应用前景广阔。在这项研究中,我们成功合成了 CeO2 纳米粒子和氮冠配体的共轭物。然后,选择了放射性核素 65Zn、44Sc 和 207Bi 的放射性标记条件,并评估了复合物在生物重要介质中的动力学稳定性。发现 CeO2-APTES-L 和 CeO2-APTES-DOTA 标记的最佳条件是:[65Zn]Zn2+、[44Sc]Sc3+ 和[207Bi]Bi3+ 复合物的共轭物为 0.1 g l-1 和 10-9 M 金属阳离子,温度为 90 °C。CeO2-APTES-L-44Sc (放射化学纯度超过 90%)在胎牛血清中稳定。所获得的结果使我们能够选择最有希望用于生物医学的复合物,以开展体外和体内生物分布研究。纳米铈及其衍生物对人内皮细胞 EA.hy926 无明显毒性。研究还证明了所研究的钪复合物在体内的稳定性。总之,我们的研究表明,功能化氧化铈纳米粒子可产生稳定的放射性标记纳米系统,可用于靶向给药、诊断和治疗肿瘤疾病。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
5.80
自引率
2.40%
发文量
129
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