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Elucidating the Ordering in Self-Assembled Glycocalyx Mimicking Supramolecular Copolymers in Water

机译:阐明模仿超分子共聚物在水中的自组装糖萼中的有序化

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Polysaccharides present in the glycocalyx and extracellular matrix are highly important for a multitude of functions. Oligo- and polysaccharides-based biomaterials are being developed to mimic the glycocalyx, but the spatial functionalization of these polysaccharides represents a major challenge. In this paper, a series of benzene-1,3,5-tricarboxamide (BTA) based supramolecular monomers is designed and synthesized with mono- (BTA-beta-D-glucose; BTA-Glc and BTA-alpha-D-mannose; BTA-Man) or disaccharides (BTA-beta-D-cellobiose; BTA-Cel) at their periphery or a monosaccharide (BTA-OEG(4)-alpha-D-mannose; BTA-OEG,-Man) at the end of a tetraethylene glycol linker. These glycosylated BTAs have been used to generate supramolecular assemblies and it is shown that the nature of the carbohydrate appendage is crucial for the supramolecular (co)polymerization behavior. BTA-Glc and BTA-Man are shown to assemble into micrometers long 1D (bundled) fibers with opposite helicities, whereas BTA-Cel and BTA-OEG,-Man formed small spherical micelles. The latter two monomers are used in a copolymerization approach with BTA-Glc, BTA-Man, or ethylene glycol BTA (BTA-OEG(4)) to give 1D fibers with BTA-Cel or BTA-OEG(4)-Man incorporated. Consequently, the carbohydrate appendage influences both the assembly behavior and the internal order. Using this approach it is possible to create ID-fibers with adjustable saccharide densities exhibiting tailored dynamic exchange profiles. Furthermore, hydrogels with tunable mechanical properties can be achieved, opening up possibilities for the development of multicomponent functional biomaterials.
机译:存在于糖萼和细胞外基质中的多糖对于多种功能非常重要。正在开发基于寡糖和多糖的生物材料,以模仿糖萼,但是这些多糖的空间功能化是一个重大挑战。本文设计并合成了一系列基于苯-1,3,5-三甲酰胺(BTA)的超分子单体,并与单-(BTA-β-D-葡萄糖; BTA-Glc和BTA-α-D-甘露糖; BTA-Man)或二糖(BTA-β-D-纤维二糖; BTA-Cel)在其外围,或单糖(BTA-OEG(4)-α-D-甘露糖; BTA-OEG,-Man)四乙二醇接头。这些糖基化的BTA已用于生成超分子组装,并且表明,碳水化合物附件的性质对于超分子(共)聚合行为至关重要。 BTA-Glc和BTA-Man组装成具有相反螺旋度的微米长的1D(成束)纤维,而BTA-Cel和BTA-OEG-Man形成小的球形胶束。后两种单体用于与BTA-Glc,BTA-Man或乙二醇BTA(BTA-OEG(4))的共聚方法中,从而获得掺入BTA-Cel或BTA-OEG(4)-Man的1D纤维。因此,碳水化合物附属物会影响组装行为和内部秩序。使用这种方法,有可能创建具有可调节糖密度的ID纤维,这些糖纤维具有定制的动态交换特性。此外,可以获得具有可调机械性能的水凝胶,为开发多组分功能性生物材料打开了可能性。

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