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Label-Free Imaging of Gelatin-Containing Hydrogel Scaffolds

机译:含明胶的水凝胶支架的无标记成像。

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摘要

Composite hyaluronic acid (HA) hydrogels containing gelatin are used in regenerative medicine as tissue-mimicking scaffolds for improving stem cell survival. Once implanted, it is assumed that these biomaterials disintegrate over time, but at present there is no non-invasive imaging technique available with which such degradation can be directly monitored in vivo. We show here the potential of chemical exchange saturation transfer magnetic resonance imaging (CEST MRI) as a label-free non-invasive imaging technique to monitor dynamic changes in scaffold composition in vivo. The CEST properties of the three individual hydrogel components (HA, gelatin-GelinS, and polyethylene glycol diacrylate) were first measured in vitro. The complete hydrogel was then injected into the brain of immunodeficient rag2−/− mice and CEST MR images were obtained at day 1 and 7 post-transplantation. In vitro, GelinS gave the strongest CEST signal at 3.6 ppm offset from the water peak, originating from the amide protons present in gelatin. In vivo, a significant decrease in CEST signal was observed at 1 week post-implantation. These results were consistent with the biodegradation of the GelinS component, as validated by fluorescent microscopy of implanted hydrogels containing Alexa Fluor 488-labeled GelinS. Our label-free imaging approach should be useful for further development of hydrogel formulations with improved composition and stability.
机译:含有明胶的复合透明质酸(HA)水凝胶在再生医学中用作模仿组织的支架,以改善干细胞的存活率。一旦被植入,就假定这些生物材料会随着时间而分解,但是目前尚无非侵入性成像技术可用于在体内直接监测这种降解。我们在这里显示了化学交换饱和转移磁共振成像(CEST MRI)作为一种无标签的非侵入性成像技术来监测体内支架组成的动态变化的潜力。首先在体外测量三种单独的水凝胶组分(HA,明胶-GelinS和聚乙二醇二丙烯酸酯)的CEST特性。然后将完整的水凝胶注射到免疫缺陷的rag2 -/-小鼠的大脑中,并在移植后第1天和第7天获得CEST MR图像。在体外,GelinS在距水峰3.6 ppm处给出了最强的CEST信号,其源于明胶中存在的酰胺质子。在体内,在植入后1周观察到CEST信号的显着降低。这些结果与GelinS组分的生物降解一致,这一点已通过荧光显微镜验证,其中包含Alexa Fluor 488标记的GelinS的植入水凝胶。我们的无标签成像方法应可用于进一步开发具有改善的成分和稳定性的水凝胶制剂。

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