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SurfacePEG Grafting Density Determines Magnetic Relaxation Properties ofGd-Loaded Porous Nanoparticles for MR Imaging Applications

机译:表面PEG接枝密度决定了Pb的磁弛豫特性用于MR成像应用的Gd负载多孔纳米颗粒

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摘要

Surface PEGylation of nanoparticles designed for biomedical applications is a common and straightforward way to stabilize the materials for in vivo administration and to increase their circulation time. This strategy becomes less trivial when MRI active porous nanomaterials are concerned as their function relies on water/proton-exchange between the pores and bulk water. Here we present a comprehensive study on the effects of PEGylation on the relaxometric properties of nanozeolite LTL (dimensions of 20 × 40 nm) ion-exchanged with paramagnetic GdIII ions. We evidence that as long as the surface grafting density of the PEG chains does not exceed the “mushroom” regime (conjugation of up to 6.2 wt % of PEG), Gd-LTL retains a remarkable longitudinal relaxivity (38 s–1 mM–1 at 7 T and 25 °C) as well as the pH-dependence of the longitudinal and transverse relaxation times. At higher PEG content, the more compact PEG layer (brush regime) limits proton/water diffusion and exchange between the interior of LTL and the bulk, with detrimental consequences on relaxivity. Furthermore,PEGylation of Gd-LTL dramatically decreases the leakage of toxic GdIII ions in biological media and in the presence of competinganions, which together with minimal cytotoxicity renders these materialspromising probes for MRI applications.
机译:设计用于生物医学应用的纳米粒子的表面PEG化是稳定用于体内给药的材料并增加其循环时间的常见且直接的方法。当关注MRI活性多孔纳米材料时,由于其功能依赖于孔和大量水之间的水/质子交换,因此这种策略变得不那么琐碎。在此,我们对聚乙二醇化对顺磁性Gd III 离子交换的纳米沸石LTL(尺寸为20×40 nm)的弛豫特性进行综合研究。我们证明,只要PEG链的表面接枝密度不超过“蘑菇”制度(最多PEG的6.2 wt%的结合),Gd-LTL就会保持显着的纵向松弛度(38 s -1 mM –1 在7 T和25°C下)以及纵向和横向弛豫时间的pH依赖性。在较高的PEG含量下,更紧密的PEG层(刷涂方式)会限制质子/水在LTL内部与主体之间的扩散和交换,从而对弛豫性产生不利影响。此外,Gd-LTL的PEG化大大降低了有毒Gd III 离子在生物介质中和存在竞争性物质时的泄漏阴离子以及最小的细胞毒性使这些物质MRI应用的有前途的探针。

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