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作为用于潜在脑肿瘤成像的磁共振成像造影剂的氨基酸支化自由基树枝状大分子的合成与弛豫性研究

Synthesis and Relaxivity study of amino acid-branched radical dendrimers as MRI contrast agents for potential brain tumor imaging.

作者信息

Wu Yufei, Lloveras Vega, Lope-Piedrafita Silvia, Mulero-Acevedo Marta, Candiota Ana Paula, Vidal-Gancedo José

机构信息

Institut de Ciència de Materials de Barcelona, ICMAB-CSIC, Campus UAB, E-08193 Bellaterra, Spain.

Institut de Ciència de Materials de Barcelona, ICMAB-CSIC, Campus UAB, E-08193 Bellaterra, Spain; CIBER de Bioingeniería, Biomateriales y Nanomedicina, Instituto de Salud Carlos III, Campus UAB, 08913 Bellaterra, Spain.

出版信息

Acta Biomater. 2025 Jan 15;192:461-472. doi: 10.1016/j.actbio.2024.12.006. Epub 2024 Dec 9.

DOI:10.1016/j.actbio.2024.12.006
PMID:39647652
Abstract

This study introduces a series of water-soluble radical dendrimers (G0 to G5) as promising magnetic resonance imaging (MRI) contrast agents that could potentially address clinical safety concerns associated with current gadolinium-based contrast agents. By using a simplified synthetic approach based on a cyclotriphosphazene core and lysine-derived branching units, we successfully developed a G5 dendrimer containing up to 192 units of 2,2,6,6-Tetramethylpiperidinyloxy (TEMPO) radical. This synthesis offers advantages including ease of preparation, purification, and tunable water solubility through the incorporation of glutamic acid anion residues. Comprehensive characterization using H NMR, FT-IR, and SEC-HPLC confirmed the dendrimers' structures and purity. Electron paramagnetic resonance (EPR) spectroscopy revealed that TEMPO groups in higher generation dendrimers exhibited decreased mobility and stronger spin exchange in their local environments. In vitro MRI showed that relaxivity (r) increased with higher dendrimer generations, with G5 exhibiting an exceptionally high r of over 24 mMs. Molecular dynamics simulations provided crucial insights into structure-property relationships, revealing the importance of water accessibility to TEMPO groups for enhancing relaxivity. Vero cell viability assay demonstrated G3 and G3.5 have good biocompatibility. In vivo MRI experiments in mice demonstrated that G3.5 was excreted through the kidneys and selectively accumulated in glioblastoma tumors. STATEMENT OF SIGNIFICANCE: This study explores a class of MRI contrast agents based on organic radical dendrimers as a potential alternative to gadolinium-based agents. We present a simplified synthesis method for water-soluble dendrimers containing up to 192 TEMPO radical units-the highest number achieved to date for this class of compounds-resulting in record-high relaxivity values. Our approach offers easier preparation, purification, and tunable water solubility, representing an improvement over existing methods. Through combined experimental and computational studies, we provide insights into the structure-property relationships governing relaxivity. In vivo experiments demonstrate the dendrimers' potential for glioblastoma imaging, with predominantly renal excretion. This work represents a step towards developing metal-free MRI contrast agents with promising relaxivity and biocompatibility, potentially opening new avenues for diagnostic imaging research.

摘要

本研究介绍了一系列水溶性自由基树枝状大分子(G0至G5),作为有前景的磁共振成像(MRI)造影剂,有望解决与当前基于钆的造影剂相关的临床安全问题。通过使用基于环三磷腈核心和赖氨酸衍生分支单元的简化合成方法,我们成功开发了一种含有多达192个2,2,6,6-四甲基哌啶氧基(TEMPO)自由基单元的G5树枝状大分子。这种合成方法具有诸多优点,包括易于制备、纯化,以及通过引入谷氨酸阴离子残基实现可调的水溶性。使用1H NMR、FT-IR和SEC-HPLC进行的全面表征证实了树枝状大分子的结构和纯度。电子顺磁共振(EPR)光谱显示,更高代树枝状大分子中的TEMPO基团在其局部环境中表现出降低的流动性和更强的自旋交换。体外MRI表明,弛豫率(r)随着树枝状大分子代数的增加而增加,G5表现出超过24 mM-1s-1的异常高的r值。分子动力学模拟为结构-性质关系提供了关键见解,揭示了水可及性对TEMPO基团增强弛豫率的重要性。Vero细胞活力测定表明G3和G3.5具有良好的生物相容性。在小鼠体内进行的MRI实验表明,G3.5通过肾脏排泄,并选择性地积聚在胶质母细胞瘤肿瘤中。重要性声明:本研究探索了一类基于有机自由基树枝状大分子的MRI造影剂,作为基于钆的造影剂的潜在替代品。我们提出了一种简化的合成方法,用于制备含有多达192个TEMPO自由基单元的水溶性树枝状大分子——这是迄今为止此类化合物所达到的最高数量——从而产生了创纪录的高弛豫率值。我们的方法提供了更简便的制备、纯化和可调的水溶性,代表了对现有方法的改进。通过结合实验和计算研究,我们深入了解了控制弛豫率的结构-性质关系。体内实验证明了树枝状大分子在胶质母细胞瘤成像方面的潜力,主要通过肾脏排泄。这项工作代表了朝着开发具有有前景的弛豫率和生物相容性的无金属MRI造影剂迈出的一步,可能为诊断成像研究开辟新途径。

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