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Multifunctional Compartmentalized Capsules with a Hierarchical Organization from the Nano to the Macro Scales

机译:具有从纳米级到宏观级的分级组织的多功能隔室胶囊

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摘要

Inspired by the cells' structure, we present compartmentalized capsules with temperature and magnetic-based responsiveness and hierarchical organization ranging from the nano- to the visible scales. Liquefied alginate macroscopic beads coated with a layer-by-layer (LbL) chitosan/alginate shell served as containers both for model fluorophores and microcapsules, which in their turn encapsulated either another fluorophore or magnetic nanoparlicles (MNPs). The microcapsules were coated with a temperature-responsive chitosan/elastin-like recombinamer (ELR) nanostructured shell. By varying the temperature from 25 to 37 °C, the two-hour release of rhodamine encapsulated within the microcapsules and its diffusion through the external compartment decreased from 84% and 71%. The devices could withstand handling and centrifugal stress, with 50% remaining intact at a rotation speed of 2000g. MNPs attributed magnetic responsiveness toward external magnetic fields. Such a customizable system can be envisaged to transport bioactive agents and cells in tissue engineering applications.
机译:受细胞结构的启发,我们展示了具有温度和磁场响应性以及从纳米级到可见级的层级组织的间隔胶囊。液化的藻酸盐宏观珠粒包覆有一层层的(LbL)壳聚糖/藻酸盐壳,既用作模型荧光团和微胶囊的容器,又封装了另一种荧光团或磁性纳米粒子(MNP)。所述微胶囊用温度响应性壳聚糖/弹性蛋白样重组体(ELR)纳米结构壳包被。通过将温度从25℃更改为37℃,封装在微胶囊中的若丹明两小时释放及其通过外部隔室的扩散从84%和71%降低。这些设备可以承受搬运和离心应力,在2000g的转速下保持50%完好无损。 MNP归因于对外部磁场的磁响应。可以设想这种可定制的系统在组织工程应用中运输生物活性剂和细胞。

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