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Photoresponsive Polysaccharide-Based Hydrogels with Tunable Mechanical Properties for Cartilage Tissue Engineering

机译:具有可调机械性能的光响应性多糖基水凝胶,用于软骨组织工程

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Photoresponsive hydrogels were obtained by coordination of alginate-acrylamide hybrid gels (AlgAam) with ferric ions. The photochemistry of Fe(III)-alginate was used to tune the chemical composition, mechanical properties, and microstructure of the materials upon visible light irradiation. The photochemical treatment also induced changes in the swelling properties and transport mechanism in the gels due to the changes in material composition and microstructure. The AlgAam gels were biocompatible and could easily be dried and rehydrated with no change in mechanical properties. These gels showed promise as scaffolds for cartilage tissue engineering, where the photochemical treatment could be used to tune the properties of the material and ultimately change the growth and extracellular matrix production of chondrogenic cells. ATDC5 cells cultured on the hydrogels showed a greater than 2-fold increase in the production of sulfated glycosaminoglycans (sGAG) in the gels irradiated for 90 min compared to the dark controls. Our method provides a simple photochemical tool to postsynthetically control and adjust the chemical and mechanical environment in these gels, as well as the pore microstructure and transport properties. By changing these properties, we could easily access different levels of performance of these materials as substrates for tissue engineering.
机译:通过将藻酸盐-丙烯酰胺杂化凝胶(AlgAam)与三价铁离子配位获得光敏性水凝胶。 Fe(III)-藻酸盐的光化学用于调节可见光照射下材料的化学组成,机械性能和微观结构。由于材料组成和微观结构的变化,光化学处理还引起了凝胶的溶胀特性和传输机理的变化。 AlgAam凝胶具有生物相容性,可以轻松干燥和再水化,而机械性能没有变化。这些凝胶有望作为软骨组织工程的支架,在那里光化学处理可用于调节材料的特性,并最终改变软骨细胞的生长和细胞外基质的产生。与黑暗对照相比,在水凝胶上培养的ATDC5细胞在辐照90分钟的凝胶中的硫酸化糖胺聚糖(sGAG)产量增加​​了2倍以上。我们的方法提供了一种简单的光化学工具,用于后期合成控制和调节这些凝胶中的化学和机械环境,以及孔的微结构和传输特性。通过更改这些属性,我们可以轻松地获得这些材料作为组织工程基质的不同性能水平。

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