Gu Meng-Jie, Li Kun-Feng, Zhang Lan-Xin, Wang Huan, Liu Li-Si, Zheng Zhuo-Zhao, Han Nan-Yin, Yang Zhen-Jun, Fan Tian-Yuan
State Key Laboratory of Natural and Biomimetic Drugs, School of Pharmaceutical Sciences, Peking University, Beijing, People's Republic of China.
Department of Radiology, Peking University Third Hospital, Beijing, People's Republic of China.
Int J Nanomedicine. 2015 Aug 17;10:5187-204. doi: 10.2147/IJN.S84351. eCollection 2015.
Novel gadolinium-loaded liposomes guided by GBI-10 aptamer were developed and evaluated in vitro to enhance magnetic resonance imaging (MRI) diagnosis of tumor. Nontargeted gadolinium-loaded liposomes were achieved by incorporating amphipathic material, Gd (III) [N,N-bis-stearylamidomethyl-N'-amidomethyl] diethylenetriamine tetraacetic acid, into the liposome membrane using lipid film hydration method. GBI-10, as the targeting ligand, was then conjugated onto the liposome surface to get GBI-10-targeted gadolinium-loaded liposomes (GTLs). Both nontargeted gadolinium-loaded liposomes and GTLs displayed good dispersion stability, optimal size, and zeta potential for tumor targeting, as well as favorable imaging properties with enhanced relaxivity compared with a commercial MRI contrast agent (CA), gadopentetate dimeglumine. The use of GBI-10 aptamer in this liposomal system was intended to result in increased accumulation of gadolinium at the periphery of C6 glioma cells, where the targeting extracellular matrix protein tenascin-C is overexpressed. Increased cellular binding of GTLs to C6 cells was confirmed by confocal microscopy, flow cytometry, and MRI, demonstrating the promise of this novel delivery system as a carrier of MRI contrast agent for the diagnosis of tumor. These studies provide a new strategy furthering the development of nanomedicine for both diagnosis and therapy of tumor.
开发了由GBI-10适配体引导的新型载钆脂质体,并在体外进行了评估,以增强肿瘤的磁共振成像(MRI)诊断。通过使用脂质膜水合方法将两亲性材料Gd(III)[N,N-双硬脂酰胺甲基-N'-酰胺甲基]二乙三胺四乙酸掺入脂质体膜中,制备了非靶向载钆脂质体。然后将作为靶向配体的GBI-10缀合到脂质体表面,以获得GBI-10靶向载钆脂质体(GTL)。与市售MRI造影剂(CA)钆喷酸葡胺相比,非靶向载钆脂质体和GTL均表现出良好的分散稳定性、适合肿瘤靶向的最佳尺寸和zeta电位,以及具有增强弛豫率的良好成像特性。在该脂质体系统中使用GBI-10适配体旨在使钆在C6胶质瘤细胞周边的积累增加,在该区域靶向细胞外基质蛋白腱生蛋白-C过表达。共聚焦显微镜、流式细胞术和MRI证实了GTL与C6细胞的细胞结合增加,证明了这种新型递送系统作为MRI造影剂载体用于肿瘤诊断的前景。这些研究为推进用于肿瘤诊断和治疗的纳米医学发展提供了一种新策略。