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Squishy Non-Spherical Hydrogel Microparticles

机译:squishy非球形水凝胶微粒

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摘要

Recent advances in the synthesis of polymeric colloids have opened the doors to new advanced materials. There is strong interest in using these new techniques to produce particles that mimic and/or interact with biological systems. An important characteristic of biological systems that has not yet been exploited in synthetic polymeric colloids is their wide range of deformability. A canonical example of this is the human red blood cell (RBC) which exhibits extreme reversible deformability under flow. Here we report the synthesis of soft polymeric colloids with sizes and shapes that mimic those of the RBC. Additionally, we demonstrate that the mechanical flexibility of the colloids can be reproducibly varied over a large range resulting in RBC-like deformability under physiological flow conditions. These materials have the potential to impact the interaction between biological and synthetic systems.
机译:聚合物胶体合成的最新进展为新型先进材料打开了大门。使用这些新技术来产生模拟生物系统和/或与生物系统相互作用的粒子引起了极大的兴趣。尚未在合成聚合物胶体中开发的生物系统的重要特征是其广泛的可变形性。一个典型的例子是人类红细胞(RBC),它在流动下表现出极高的可逆变形能力。在这里,我们报告了具有类似RBC的大小和形状的软聚合物胶体的合成。此外,我们证明了胶体的机械柔韧性可以在较大的范围内可复制地变化,从而在生理流动条件下产生RBC样的可变形性。这些材料有可能影响生物系统与合成系统之间的相互作用。

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