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Influence of hyaluronic acid modification on CD44 binding towards the design of hydrogel biomaterials

机译:透明质酸改性对水凝胶生物材料设计CD44结合的影响

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Hyaluronic acid (HA) is a linear polysaccharide of D-glucuronic acid and N-acetyl-D-glucosamine that is native to many tissues and interacts with cells via cell-surface receptors (e.g., CD44). HA has been extensively explored as a chemically-modified macromer for crosslinking into biomaterials, such as hydrogels and macroporous scaffolds. However, the influence of the extent and type of HA modification on its binding to CD44 is not well understood or quantified. To address this, we modified HA at either the carboxylic acid or the primary alcohol with various chemical groups (e.g., norbomenes, methacrylates) and magnitudes (similar to 10, 20, or 40% of disaccharides) and then characterized binding in both soluble and hydrogel forms. HA binding to CD44 immobilized on plates or presented by cells was influenced by the extent and type of its modification, where increased modification (i.e., similar to 40%) generally decreased binding. The adhesion of CD44-modified beads to hydrogels as measured by atomic force microscopy revealed a similar trend, particularly with decreased adhesion with hydrophobic modifications to the carboxylic acid. Further, the chondrogenesis of mesenchymal stromal cells when encapsulated in hydrogels fabricated from modified HA macromers was reduced at high modification, behaving similarly to inert hydrogel controls. This work suggests that the types and extents of modification of polysaccharides are important factors that should be considered in preserving their biological function when processed as hydrogels.
机译:透明质酸(HA)是D-葡糖醛酸和N-乙酰基-D-葡糖胺的线性多糖,其原产于许多组织,并通过细胞表面受体(例如CD44)与细胞相互作用。 HA已被广泛探索作为化学改性的大分子机,用于交联成生物材料,例如水凝胶和大孔支架。然而,对其与CD44结合的HA改性的程度和类型的影响不是很好的理解或量化。为了解决这一点,我们在羧酸或伯醇以各种化学基团(例如,脱水榈烯酮,甲基丙烯酸酯)和幅度(类似于10,20,或40%的二糖)进行修饰HA,然后在可溶性和溶解中表征结合水凝胶形式。 Ha与固定在平板上的CD44或通过细胞呈现的CD44受其改性的程度和类型的影响,其中改性增加(即类似于40%)通常降低结合。通过原子力显微镜测量的CD44改性珠粒对水凝胶的粘附性揭示了类似的趋势,特别是粘附性降低,含有疏水性修饰对羧酸。此外,在高压改性下降低了在制造的改性的HA大分子体制造的水凝胶中包封时的间充质基质细胞的细胞发生,表现与惰性水凝胶对照相似。这项工作表明,多糖改性的类型和范围是应考虑在作为水凝胶加工时保留其生物学功能的重要因素。

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