首页> 美国卫生研究院文献>Iranian Journal of Pharmaceutical Research : IJPR >Dextran-based Nanomicelle System with Directly Ester-bound Gadolinium Chelates as a Magnetic Resonance Imaging Contrast Agent for Tumor Detection
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Dextran-based Nanomicelle System with Directly Ester-bound Gadolinium Chelates as a Magnetic Resonance Imaging Contrast Agent for Tumor Detection

机译:基于葡聚糖的纳米摩尔系统具有直接酯结合的钆螯合物作为肿瘤检测的磁共振成像造影剂

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摘要

There is a strong need to develop MRI contrast agents (CAs) with lower in-vivo retention, stronger signal enhancement, and more specific imaging. Here, we report a novel dextran (DEX)-based nanomicelle system as an MRI CA with superior tumor imaging and relatively short intravascular persistence. Gadolinium (Gd)-chelate (DTPA-Gd) was conjugated directly to DEX hydroxyl via a degradable ester bond. DEX-DTPA-Gd was then modified with dodecylsuccinic anhydride to obtain the amphiphilic derivative, 2-dodecylsuccinic acid (DSA)-grafted DEX-DTPA-Gd. Nanomicelles were prepared by dissolving DSA-DEX-DTPA-Gd in water using ultrasonication. The physicochemical properties, cytotoxicity, and MRI efficiency of the synthesized CA were evaluated. The synthesized DSA-DEX-DTPA-Gd self-assembled into nanomicelles with an average diameter of 67.80 ± 5.21 nm. Within the given Gd concentration range, DSA-DEX-DTPA-Gd and Magnevist® exhibited similar cytotoxicity. DEX-based CAs resulted in a greater contrast enhancement of T1-weighted signal intensity in the tumor region than Magnevist®, and the tumors were clearly defined for at least 3 h. Simultaneously, the ester bond in DSA-DEX-DTPA-Gd facilitated the elimination of Gd chelates, compared with the relatively more stable amide linker. The DEX-based nanomicelle system with directly ester-bound DTPA-Gd may serve as an MRI CA with superior tumor imaging and relatively rapid elimination.
机译:强烈需要开发MRI造影剂(CAS),具有较低的体内保留,更强的信号增强和更具体的成像。在这里,我们报告一种新的葡聚糖(DEX)的纳米摩尔系统,作为MRI Ca,具有优异的肿瘤成像和相对短的血管内持久性。通过可降解的酯键直接与Dex羟基缀合钆(Gd)(DTPA-Gd)。然后用十二烷基琥珀酸酐改性DEX-DTPA-GD,得到两亲衍生物,2-十二烷基琥珀酸(DSA) - 移植的DEX-DTPA-GD。通过使用超声波溶解在水中的DSA-DEX-DTPA-GD制备纳米核。评估了合成的CA的物理化学性质,细胞毒性和MRI效率。合成的DSA-DEX-DTPA-GD将平均直径为67.80±5.21nm的纳米钙。在给定的GD浓度范围内,DSA-DEX-DTPA-GD和MAGENVIST®表现出类似的细胞毒性。基于DEX的CAS导致肿瘤区域中T1加权信号强度的对比增强比MAGIMEVIST®,肿瘤清楚地定义至少3小时。同时,与相对更稳定的酰胺接头相比,DSA-DEX-DTPA-GD中的酯键有助于消除GD螯合物。具有直接酯结合的DTPA-GD的基于DEX的纳米摩尔系统可以用作具有优异肿瘤成像的MRI CA,并且相对快速地消除。

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