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Optical projection tomography technique for image texture and mass transport studies in hydrogels based on gellan gum

机译:基于结冷胶的光学投影层析成像技术在水凝胶中的图像纹理和质量传输研究

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摘要

The microstructure and permeability are crucial factors for the development of hydrogels for tissue engineering, since they influence cell nutrition, penetration and proliferation. The currently available imaging methods able to characterize hydrogels have many limitations. They often require sample drying and other destructive processing, which can change hydrogel structure, or they have limited imaging penetration depth. In this work, we show for the first time an alternative non-destructive method, based on optical projection tomography (OPT) imaging, to characterize hydrated hydrogels without the need of sample processing. As proof of concept we used gellan gum (GG) hydrogels obtained by several crosslinking methods. Transmission mode OPT was used to analyse image microtextures and emission mode OPT to study mass transport. Differences in hydrogels structure related to different types of crosslinking and between modified and native GG were found through the acquired Haralickâ s image texture features followed by multiple discriminant analysis (MDA). In mass transport studies, the mobility of FITC-dextran (MW 20, 150, 2000 kDa) was analysed through the macroscopic hydrogel. The FITC-dextran velocities were found to be inversely proportional to the size of the dextran as expected. Furthermore, the threshold size in which the transport is affected by the hydrogel mesh was found to be 150 kDa (Stokesâ radii between 69 à and 95 à ). On the other hand, the mass transport study allowed us to define an index of homogeneity to assess the crosslinking distribution, structure inside the hydrogel and repeatability of hydrogel production. As a conclusion,  we showed that  the set of OPT imaging based material characterization methods presented here are useful for screening many characteristics of hydrogel compositions in relatively short time in an inexpensive manner, providing  tools for improving the process of designing hydrogels for tissue engineering and drugs/cells delivery applications.
机译:微观结构和渗透性是开发用于组织工程的水凝胶的关键因素,因为它们影响细胞营养,渗透和增殖。当前可用的能够表征水凝胶的成像方法具有许多局限性。它们通常需要样品干燥和其他破坏性处理,这可能会改变水凝胶的结构,或者成像穿透深度有限。在这项工作中,我们首次展示了一种基于光学投影断层扫描(OPT)成像的替代性非破坏性方法,无需样品处理即可表征水合水凝胶。作为概念验证,我们使用了通过几种交联方法获得的吉兰糖胶(GG)水凝胶。传输模式OPT用于分析图像微观纹理,发射模式OPT用于研究质量传输。通过获得的哈拉里克(Haralick)图像纹理特征,然后进行多判别分析(MDA),发现了与不同类型的交联以及改性和天然GG之间的水凝胶结构差异。在大众运输研究中,通过宏观水凝胶分析了FITC-葡聚糖(MW 20、150、2000 kDa)的迁移率。发现FITC-右旋糖酐的速度与右旋糖酐的大小成反比。此外,发现水凝胶筛网影响运输的阈值大小为150 kDa(斯托克斯半径在69到95之间)。另一方面,大众运输研究使我们能够定义均一性指数,以评估交联分布,水凝胶内部的结构以及水凝胶生产的可重复性。结论是,我们表明此处介绍的基于OPT成像的材料表征方法集可用于以相对便宜的方式在相对短的时间内筛选水凝胶组合物的许多特性,从而为改进用于组织工程和临床医学的水凝胶设计过程提供了工具。药物/细胞递送应用。

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