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首页> 外文期刊>International Journal of Nanomedicine >In vitro study of novel gadolinium-loaded liposomes guided by GBI-10 aptamer for promising tumor targeting and tumor diagnosis by?magnetic resonance imaging
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In vitro study of novel gadolinium-loaded liposomes guided by GBI-10 aptamer for promising tumor targeting and tumor diagnosis by?magnetic resonance imaging

机译:GBI-10适配体引导的新型负载lin脂质体的体外靶向研究和磁共振成像诊断研究

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Abstract: 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.
机译:摘要:研制并在GBI-10适配体的指导下,对新型负载ado的脂质体进行了体外评估,以增强磁共振成像(MRI)诊断肿瘤的能力。通过使用脂质膜水合作用方法将两亲性材料Gd(III)[N,N-双-硬脂酰胺基甲基-N'-氨基甲基]二亚乙基三胺四乙酸掺入脂质体膜中,从而实现了非靶向负载ado的脂质体。然后将GBI-10作为靶向配体偶联到脂质体表面上,以获得靶向GBI-10-的g负载脂质体(GTL)。与市售MRI造影剂(CA)相比,pent多戊二酸二聚体亮光(gadopentetate dimeglumine),非靶向good负载脂质体和GTL均表现出良好的分散稳定性,最佳大小和zeta靶向肿瘤的潜力,以及良好的成像性能和增强的弛豫度。在该脂质体系统中使用GBI-10适体旨在导致g在C6胶质瘤细胞周围的表达增加,其中C6胶质瘤细胞周围的目标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有望作为MRI造影剂的载体用于诊断肿瘤。这些研究提供了新的策略,进一步发展了用于诊断和治疗肿瘤的纳米药物。

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