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Gadolinium oxide nanoplates with high longitudinal relaxivity for magnetic resonance imaging

机译:氧化钆nanoplates纵向高relaxivity磁共振成像

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摘要

Molecular-based contrast agents for magnetic resonance imaging (MRI) are often characterized by insufficient relaxivity, thus requiring the systemic injection of high doses to induce sufficient contrast enhancement at the target site. In this work, gadolinium oxide (Gd2O3) nanoplates are produced via a thermal decomposition method. The nanoplates have a core diameter varying from 2 to 22 nm, a thickness of 1 to 2 nm and are coated with either an oleic acid bilayer or an octylamine modified polytacrylic acid) (PAA-OA) polymer layer. For the smaller nanoplates, longitudinal relaxivities (r1 of 7.96 and 47.2 (mM s)~(-1) were measured at 1.41 T for the oleic acid bilayer and PAA-OA coating, respectively. These values moderately reduce as the size of the Gd2O3 nanoplates increases, and are always larger for the PAA-OA coating. Cytotoxicity studies on human dermal fibroblast cells documented no significant toxicity, with 100% cell viability preserved up to 250 μM for the PAA-OA coated Gd2O3 nanoplates. Given the 10 times increase in longitudinal relaxivity over the commercially available Gd-based molecular agents and the favorable toxicity profile, the 2 nm PAA-OA coated Gd2O3 nanoplates could represent a new class of highly effective T1 MRI contrast agents.
机译:分子磁性造影剂磁共振成像(MRI)常常为特征relaxivity不足,因此需要系统性注射高剂量诱导足够的对比度增强的目标网站。通过热nanoplates生产分解方法。从2 - 22纳米直径不同,厚度1到2海里,涂以一个油的酸双分子层或octylamine修改polytacrylic酸)(PAA-OA)聚合物层。nanoplates越小,纵向relaxivities(r1的7.96和47.2 (mM) ~(1)测量1.41 T油酸双分子层和PAA-OA分别涂层。减少的大小Gd2O3 nanoplates增加,PAA-OA总是更大涂层。成纤维细胞没有明显的记录毒性,100%的细胞生存能力保存起来250μM的PAA-OA涂布Gd2O3 nanoplates。考虑到纵向增加10倍relaxivity商用Gd-based分子代理和有利毒性资料,2 nm PAA-OA涂布Gd2O3nanoplates可能代表了一类新的高度有效的T1磁共振成像造影剂。

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