Xia Lei, Song Xiaowei, Yan Guanghai, Quan Jishan, Jin Guangyu
Department of Radiology, Affiliated Hospital of Yanbian University, No. 1327, Juzi Street, Yanji 133000, Jilin Province, P.R. China.
Department of Anatomy, Basic Medical College, Yanbian University, Yanji 133000, Jilin Province, P.R. China.
Open Life Sci. 2022 Aug 15;17(1):952-959. doi: 10.1515/biol-2022-0074. eCollection 2022.
This study aims to synthesize a magnetic resonance imaging (MRI) contrast agent that can specifically target the asialoglycoprotein receptor of liver cancer cells and evaluate its ability as a targeted MRI contrast agent. Lactobionic acid (LA) and polyethylene glycol (PEG) were used to modify superparamagnetic iron oxide nanoparticles (SPION) to obtain LA-PEG-SPION. LA-PEG-SPION was uniformly spherical under the electron microscope, with regular morphology and good dispersion. The particle size of LA-PEG-SPION was about 30 ± 4.5 nm, and its surface potential was about 31 ± 1.5 mV. LA-PEG-SPION had no toxicity or low toxicity to HepG2 cells and HeLa cells, even at 400 μg/mL. The uptake of LA-PEG-SPION by HepG2 cells was higher than that of SPION, with increased blue-stained particles. The fluorescent labeling rate of HepG2 cells reached 68.8%, which was higher than that of the control group. MRI showed that the T2-weighted signal intensity of HepG2 cells was lower than that of the control group. Conclusively, LA-PEG-SPION nanoparticles are synthesized in a simple and efficient way. They are successfully applied to the T2-weighted contrast-enhanced MRI in liver cancer , and they have the potential to be used for research and clinical studies.
本研究旨在合成一种能够特异性靶向肝癌细胞去唾液酸糖蛋白受体的磁共振成像(MRI)造影剂,并评估其作为靶向MRI造影剂的能力。使用乳糖酸(LA)和聚乙二醇(PEG)对超顺磁性氧化铁纳米颗粒(SPION)进行修饰,以获得LA-PEG-SPION。在电子显微镜下,LA-PEG-SPION呈均匀球形,形态规则,分散性良好。LA-PEG-SPION的粒径约为30±4.5 nm,其表面电位约为31±1.5 mV。即使在400μg/mL的浓度下,LA-PEG-SPION对HepG2细胞和HeLa细胞也无毒性或低毒性。HepG2细胞对LA-PEG-SPION的摄取高于对SPION的摄取,蓝色染色颗粒增多。HepG2细胞的荧光标记率达到68.8%,高于对照组。MRI显示,HepG2细胞的T2加权信号强度低于对照组。总之,LA-PEG-SPION纳米颗粒以简单有效的方式合成。它们成功应用于肝癌的T2加权对比增强MRI,具有用于研究和临床研究的潜力。