Radiation Technology Department, St. Petersburg State Institute of Technology (Technical University), 190013 St. Petersburg, Russia.
Petersburg Nuclear Physics Institute Named by B.P. Konstantinov of National Research Centre "Kurchatov Institute", 188300 Gatchina, Russia.
Int J Mol Sci. 2024 May 14;25(10):5350. doi: 10.3390/ijms25105350.
The use of targeted drug delivery systems, including those based on selective absorption by certain receptors on the surface of the target cell, can lead to a decrease in the minimum effective dose and the accompanying toxicity of the drug, as well as an increase in therapeutic efficacy. A fullerene C conjugate (FA-PVP-C) with polyvinylpyrrolidone (PVP) as a biocompatible spacer and folic acid (FA) as a targeting ligand for tumor cells with increased expression of folate receptors (FR) was obtained. Using C NMR spectroscopy, FT-IR, UV-Vis spectrometry, fluorometry and thermal analysis, the formation of the conjugate was confirmed and the nature of the binding of its components was established. The average particle sizes of the conjugate in aqueous solutions and cell culture medium were determined using dynamic light scattering (DLS) and nanoparticle tracking analysis (NTA). The FA-PVP-C showed antiradical activity against DPPH, OH and O, but at the same time, it was shown to generate O. It was found that the conjugate in the studied concentration range (up to 200 μg/mL) is non-toxic in vitro and does not affect the cell cycle. To confirm the ability of the conjugate to selectively accumulate through folate-mediated endocytosis, its uptake into cells was analyzed by flow cytometry and confocal microscopy. It was shown that the conjugate is less absorbed by A549 cells with low FR expression than by HeLa, which has a high level of expression of this receptor.
使用靶向药物传递系统,包括基于目标细胞表面某些受体的选择性吸收的系统,可以降低药物的最小有效剂量和伴随的毒性,并提高治疗效果。已经获得了一种富勒烯 C 缀合物 (FA-PVP-C),其中聚维酮 (PVP) 作为生物相容性间隔物,叶酸 (FA) 作为叶酸受体 (FR) 表达增加的肿瘤细胞的靶向配体。通过 C NMR 光谱、FT-IR、UV-Vis 光谱、荧光法和热分析证实了缀合物的形成,并确定了其成分的结合性质。使用动态光散射 (DLS) 和纳米颗粒跟踪分析 (NTA) 测定了缀合物在水溶液和细胞培养液中的平均粒径。FA-PVP-C 对 DPPH、OH 和 O 具有抗自由基活性,但同时也显示出生成 O 的能力。研究发现,在研究浓度范围内(高达 200μg/mL),该缀合物在体外无毒,不影响细胞周期。为了确认该缀合物通过叶酸介导的内吞作用选择性积累的能力,通过流式细胞术和共聚焦显微镜分析了其进入细胞的情况。结果表明,与 FR 表达水平低的 A549 细胞相比,该缀合物的吸收较少,而 FR 表达水平高的 HeLa 细胞则吸收较多。