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使用钆螯合物和超顺磁性氧化铁颗粒定制细胞磁共振成像的图像对比度

Tailoring Image Contrast for Cellular Magnetic Resonance Imaging using Gadolinium Chelates and Superparamagnetic Iron Oxide Particles.

作者信息

Kim Young Beom

机构信息

Department of Information and Communication, College of IT Engineering, Pyeongtaek University, Pyeongtaek, Gyeonggi-Do, Korea.

出版信息

Mol Imaging Biol. 2025 Aug 21. doi: 10.1007/s11307-025-02044-x.

Abstract

To investigate magnetic relaxation properties of the tailored contrast using paramagnetic gadolinium (Gd) chelates and superparamagnetic iron oxide particles (SPIOs) for cellular magnetic resonance imaging. The study included three different exposed environments with two different characteristic contrast agents which used gadodiamide (Omniscan; Gd-DTPA-BMA) and ferumoxide (Feridex; SPIO) in C6 brain cancer cells. Based on the minimal mutual interaction between these two agents in vitro, we examined the possibility of using mixture of cells that are separately labeled with two contrast agents or using concurrently labeled cells with different concentrations of the two contrast agents. In order to characterize the MR relaxation properties, aqueous solutions containing various concentrations of the two contrast agents were prepared as well as Ficoll solution suspensions containing labeled cells by different labeling schemes and subsequently investigated R and R relaxation rates. The tailored contrast can be created by concurrent labeling of the two contrast agents as well as combining separately labeled cells with the two contrast agents. The proposed method would be applied to generate tailored contrast for efficient detection of magnetically-labeled cells in molecular imaging and cell-based therapy.

摘要

为了研究使用顺磁性钆(Gd)螯合物和超顺磁性氧化铁颗粒(SPIO)定制对比剂用于细胞磁共振成像时的磁弛豫特性。该研究包括三种不同的暴露环境,使用两种不同的特征性对比剂,即钆双胺(欧乃影;Gd-DTPA-BMA)和铁葡聚糖(菲立磁;SPIO)作用于C6脑癌细胞。基于这两种对比剂在体外的最小相互作用,我们研究了使用分别用两种对比剂标记的细胞混合物或使用同时用不同浓度的两种对比剂标记的细胞的可能性。为了表征磁共振弛豫特性,制备了含有不同浓度两种对比剂的水溶液以及通过不同标记方案含有标记细胞的Ficoll溶液悬浮液,随后研究了R和R弛豫率。定制对比剂可以通过同时标记两种对比剂以及将分别标记的细胞与两种对比剂组合来创建。所提出的方法将应用于生成定制对比剂,以在分子成像和基于细胞的治疗中有效检测磁性标记的细胞。

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