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Relaxometric Studies of Gd-Chelate Conjugated on the Surface of Differently Shaped Gold Nanoparticles

机译:Gd-螯合物共轭在不同形状的金纳米颗粒表面上的弛豫研究

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摘要

Nowadays, magnetic resonance imaging (MRI) is one of the key, noninvasive modalities to detect and stage cancer which benefits from contrast agents (CA) to differentiate healthy from tumor tissue. An innovative class of MRI CAs is represented by Gd-loaded gold nanoparticles. The size, shape and chemical functionalization of Gd-loaded gold nanoparticles appear to affect the observed relaxation enhancement of water protons in their suspensions. The herein reported results shed more light on the determinants of the relaxation enhancement brought by Gd-loaded concave cube gold nanoparticles (CCGNPs). It has been found that, in the case of nanoparticles endowed with concave surfaces, the relaxivity is remarkably higher compared to the corresponding spherical (i.e., convex) gold nanoparticles (SPhGNPs). The main determinant for the observed relaxation enhancement is represented by the occurrence of a large contribution from second sphere water molecules which can be exploited in the design of high-efficiency MRI CA.
机译:如今,磁共振成像(MRI)是检测和分期癌症的关键,非侵入性方法之一,这得益于造影剂(CA)来区分健康与肿瘤组织。载有CA的金纳米颗粒代表了创新的MRI CA类。载有Gd的金纳米粒子的大小,形状和化学功能化似乎会影响所观察到的水质子在其悬浮液中的弛豫增强。本文报道的结果更加阐明了负载Gd的凹面立方金纳米颗粒(CCGNP)带来的弛豫增强的决定因素。已经发现,在具有凹入表面的纳米颗粒的情况下,与相应的球形(即凸形)金纳米颗粒(SPhGNP)相比,弛豫性显着更高。观察到的弛豫增强的主要决定因素是第二球水分子的大量贡献,这可用于高效MRI CA设计中。

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