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3D Alginate Hydrogels with Controlled Mechanical Properties for Mammalian Cell Encapsulation

机译:用于哺乳动物细胞包封的受控机械性能的3D藻酸盐水凝胶

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Alginate is one of the most attractive biomaterials for the design of hydrogels for biological and biomedical applications. This biomaterial is composed of varying amounts of two monomers, αL-guluronic acid (G) and β-D-mannuronic acid (M). Recent reports have suggested that depending on the monomeric composition of the hydrogel, stability, mechanical resistance, biodegradability, permeability and gelation might vary significantly. Even though different alginate-based hydrogels have been explored for encapsulation of cells, a correlation between composition and mechanical properties is still missing. Closing this important knowledge gap has been considered crucial for the development of next generation 3D materials capable of resembling the features of extracellular matrices. The purpose of this study was therefore to correlate rheological and mechanical properties of two alginatebased hydrogel formulations. Alginate 1 (Low G 20%-30% of G) and alginate 2 (High G 65%-75% of G) hydrogels were prepared by the diffusion of Calcium ions from a two-layer agarose matrix. The prepared hydrogels were characterized by determining the elastic and Loss moduli at a time sweep of 1Hz. Also, stiffness was determined via AFM. The rheological tests suggest that Low G hydrogels, exhibit higher Storage moduli than High G hydrogels. In line with this result, stiffness is significantly higher for High G hydrogels.
机译:海藻酸盐是用于生物医学应用的水凝胶的最具吸引力的生物材料之一。该生物材料由不同量的两种单体,α1-铜酸(G)和β-D-甘露糖醛酸(M)组成。最近的报道表明,取决于水凝胶的单体组合物,稳定性,机械抗性,生物降解性,渗透性和凝胶化可能显着变化。尽管已经探索了不同藻酸盐的水凝胶用于封装细胞,但仍然缺少组成和机械性能之间的相关性。关闭这一重要知识差距被认为是开发能够类似于细胞外基质特征的下一代3D材料的至关重要。因此,本研究的目的是相关的两种藻酸盐的水凝胶制剂的流变和力学性能。通过钙离子与两层琼脂糖基质的扩散制备藻酸盐1(低G 20 %-30 ~g%G)和藻酸盐2(高G 65 %-75 %G)水凝胶。通过在扫描1Hz时测定弹性和损失模量来表征制备的水凝胶。而且,通过AFM确定刚度。流变检测表明,低G水凝胶,表现出比高G水凝胶更高的储存模量。根据该结果,对于高G水凝胶,刚度显着更高。

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