首页> 外文期刊>Chemistry: A European journal >Three-Dimensional Encapsulation of Live Cells by Using a Hybrid Matrix of Nanoparticles in a Supramolecular Hydrogel
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Three-Dimensional Encapsulation of Live Cells by Using a Hybrid Matrix of Nanoparticles in a Supramolecular Hydrogel

机译:通过使用超分子水凝胶中的纳米粒子的混合基质的活细胞三维封装。

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摘要

From a library of glyco-lipid mimics with muconic amide as the spacer, we found that 1, a glyco-lipid that has N-acetyl glucosamine and methyl cyclohexyl groups as its hydrophilic head and hydrophobic tails, respectively, formed a stable hydrogel (0.05 wt%) through hierarchical self-assembly of the lipid molecules into supramolecular nanofibers. The formation of the supramolecular hydrogel was verified by rheological measurements, and the supramolecular nanofiber was characterized as the structural element by transmission electron microscopy and atomic force microscopy observations. Absorption and circular dichroism spectroscopic measurements revealed that the muconic amide moieties of I are arranged in a helical, stacked fashion in the self-assembled nanofibers. Moreover, we unexpectedly found that the homogeneous distribution of the supramolecular nanofibers of 1 was greatly facilitated by the addition of polystyrene nanobeads (100500 nm in diameter), as evaluated by confocal laser scanning microscopic observations. It is interesting that the obtained supramolecular hybrid matrix can efficiently encapsulate and distribute live Jurkat cells in three dimensions under physiological conditions. This supramolecular hybrid matrix is intriguing as a unique biomaterial.
机译:从以粘康酰胺为间隔基的糖脂模拟物库中,我们发现1,以N-乙酰氨基葡萄糖和甲基环己基为亲水头和疏水尾的糖脂形成了稳定的水凝胶(0.05重量%)通过脂质分子的分层自组装成超分子纳米纤维。通过流变学测量证实了超分子水凝胶的形成,并且通过透射电子显微镜和原子力显微镜观察将超分子纳米纤维表征为结构元素。吸收和圆二色性光谱测量显示,I的粘康酰胺部分以螺旋,堆叠的方式排列在自组装的纳米纤维中。此外,我们意外地发现,通过共聚焦激光扫描显微镜观察评估,通过添加聚苯乙烯纳米珠(直径为100500 nm)极大地促进了1的超分子纳米纤维的均匀分布。有趣的是,所获得的超分子杂交基质可以在生理条件下有效地封装和分布三维的活Jurkat细胞。这种超分子杂化基质作为一种独特的生物材料而引人入胜。

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