Medical Physics Department, School of Medicine, Tehran University of Medical Sciences , Tehran , Iran.
J Microencapsul. 2013;30(7):613-23. doi: 10.3109/02652048.2013.770095. Epub 2013 Aug 5.
Recently, it has been showed that gadolinium oxide nanoparticles can provide high-contrast enhancement in magnetic resonance imaging (MRI). Moreover, liposomes due to high biocompatibility have shown unique model systems, with the most successful application being the drug delivery system. As a suitable cell-tracking contrast agent (CA) in molecular MRI (mMRI), the synthesis and optimisation characteristic of a novel paramagnetic liposomes (PMLs) based on gadolinium nanoparticles, essentially composed of a new complex of gadolinium oxide-diethylene glycol (Gd₂O₃-DEG) loaded in liposomes have been determined in this research. Gd₂O₃-DEG was prepared by a new supervised polyol method and was encapsulated with liposome by the film hydration method. The paramagnetic liposome nanoparticle (PMLN) sizes ranged from 65 to 170 nm. The r₁ of PMLNs and Gd₂O₃-DEG were much higher than that of Gd-diethylenetriamine penta-acetic acid (Gd-DTPA). In MC/9 cell lines, the experiments showed similar results as in water. PMLNs with lower T₁ than Gd-DTPA are sensitive, positive MRI CA that could be attractive candidates for cellular and molecular lipid content targets such as diagnostic applications.
最近,研究表明氧化钆纳米粒子可以在磁共振成像(MRI)中提供高对比度增强。此外,由于具有高生物相容性,脂质体已显示出独特的模型系统,其中最成功的应用是药物传递系统。作为分子磁共振成像(mMRI)中的一种合适的细胞示踪造影剂(CA),本研究确定了基于氧化钆-二甘醇(Gd₂O₃-DEG)负载的新型超顺磁脂质体(PMLs)的合成和优化特性,其本质上由负载在脂质体中的新型 Gd₂O₃-DEG 配合物组成。Gd₂O₃-DEG 通过新的监督多元醇法制备,并通过薄膜水合方法包封在脂质体中。超顺磁脂质体纳米颗粒(PMLN)的粒径范围为 65 至 170nm。PMLNs 和 Gd₂O₃-DEG 的 r₁明显高于 Gd-二乙三胺五乙酸(Gd-DTPA)。在 MC/9 细胞系中,实验结果与水中相似。PMLNs 的 T₁值低于 Gd-DTPA,是一种敏感的正 MRI CA,可能是细胞和分子脂质含量靶标(如诊断应用)的有吸引力的候选物。