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首页> 外文期刊>Biomaterials Science >F-19 magnetic resonance imaging enabled real-time, non-invasive and precise localization and quantification of the degradation rate of hydrogel scaffolds in vivo
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F-19 magnetic resonance imaging enabled real-time, non-invasive and precise localization and quantification of the degradation rate of hydrogel scaffolds in vivo

机译:F-19磁共振成像实现了实时,无侵入性和精确定位,对体内水凝胶支架的降解率的定量

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The degradation behavior of hydrogel scaffolds is closely related to the controlled release of bioactive agents and matching with the proliferative demands of newly generated tissues. However, the current methods cannot provide precise localization and track the degradation of individual hydrogel scaffolds in vivo, despite superficial or volumetric information. Here, for the first time, we presented the use of F-19 magnetic resonance imaging (F-19 MRI) to precisely monitor the localization and quantify the degradation rate of implantable or injectable hydrogels in a real-time and noninvasive manner, with no interference of endogenous background signals and limitation of penetration depth. The total voxel and content in the region of interest (ROI) were linearly correlated to the injection amount, providing exact three-dimensional (3D) stereoscopic and two-dimensional (2D) anatomical information in the meantime. Moreover, a computational algorithm was established to present the real-time degradation rate in vivo as a function of time, which was implemented directly from the F-19 MRI dataset. In addition, labelling with a zwitterionic F-19 contrast agent demonstrated a facile and general applicability for multiple types of materials with no influence on their original gelation properties as well as F-19 NMR properties in the hydrogel matrix. Therefore, this F-19 MRI method offers a new approach to non-invasively track the degradation rate of hydrogel scaffolds in vivo in a precise localization and accurate quantification way, which will suffice the need for the evaluation of implants at deep depths in large animals or human objects.
机译:水凝胶支架的降解行为与生物活性剂的控制释放和与新生成的组织的增殖需求相匹配密切相关。然而,尽管浅表或体积信息,目前的方法不能提供精确定位并跟踪体内单个水凝胶支架的降解。在此,我们首次提出了使用F-19磁共振成像(F-19 MRI),精确地监测定位,并以实时和非侵入性方式量化植入或注射水凝胶的降解率,没有内源背景信号的干扰及渗透深度的限制。感兴趣区域(ROI)中的总体素和含量与喷射量线性相关,同时提供精确的三维(3D)立体和二维(2D)解剖信息。此外,建立了计算算法,以作为时间的函数呈现实时劣化速率,其直接从F-19 MRI数据集实现。此外,用两倍离子F-19造影剂的标记显示了多种类型的材料的容易和一般适用性,没有对其原始凝胶化性能以及水凝胶基质中的F-19 NMR性能没有影响。因此,该F-19 MRI方法提供了一种新的方法,以精确定位和准确的量化方式非侵入地追踪体内水凝胶支架的降解率,这取得了需要在大型动物深度深度评估植入物的需要或人的物体。

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