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Robust and Responsive Silk lonomer Microcapsules

机译:健壮且反应灵敏的丝绸离聚物微胶囊

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We demonstrate the assembly of extremely robust and pH-responsive thin shell LbL microcapsules from silk fibroin counterparts modified with poly(lysine) and poly(glutamic) acid, which are based on biocompatible silk ionomer materials in contrast with usually exploited synthetic polyelectrolytes. The microcapsules are extremely stable in an unusually wide pH range from 1.5 to 12.0 and show a remarkable degree of reversible swelling/deswelling response in dimensions, as exposed to extreme acidic and basic conditions. These changes are accompanied by reversible variations in shell permeability that can be utilized for pH-controlled loading and unloading of large macromolecules. Finally, we confirmed that these shells can be utilized to encapsulate yeast cells with a viability rate much higher than that for traditional synthetic polyelectrolytes.
机译:我们证明了由聚丝氨酸和聚(谷氨酸)修饰的丝素蛋白对应物具有极强的鲁棒性和pH响应性的薄壳LbL微胶囊的组装,与常规开发的合成聚电解质相比,它们是基于生物相容性丝离聚物材料的。当暴露于极端的酸性和碱性条件下时,微囊在1.5至12.0的异常宽的pH范围内极其稳定,并且在尺寸上显示出显着程度的可逆溶胀/溶胀反应。这些变化伴随着壳渗透率的可逆变化,可用于pH值控制的大分子加载和卸载。最后,我们证实了这些壳可用于封装酵母细胞,其存活率远高于传统合成聚电解质。

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