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Complex microparticle architectures from stimuli-responsive intrinsically disordered proteins

机译:来自刺激响应性本质无序蛋白质的复杂微粒建筑

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The controllable production of microparticles with complex geometries is useful for a variety of applications in materials science and bioengineering. The formation of intricate microarchitectures typically requires sophisticated fabrication techniques such as flow lithography or multiple-emulsion microfluidics. By harnessing the molecular interactions of a set of artificial intrinsically disordered proteins (IDPs), we have created complex microparticle geometries, including porous particles, core-shell and hollow shell structures, and a unique ‘fruits-on-a-vine’ arrangement, by exploiting the metastable region of the phase diagram of thermally responsive IDPs within microdroplets. Through multi-site unnatural amino acid (UAA) incorporation, these protein microparticles can also be photo-crosslinked and stably extracted to an all-aqueous environment. This work expands the functional utility of artificial IDPs as well as the available microarchitectures of this class of biocompatible IDPs, with potential applications in drug delivery and tissue engineering.
机译:具有复杂几何形状的微粒的可控生产对于材料科学和生物工程中的各种应用是有用的。复杂微体系结构的形成通常需要复杂的制造技术,例如流动光刻或多重乳液微流体。通过利用一组人造本质无序蛋白(IDP)的分子相互作用,我们创造了复杂的微粒几何形状,包括多孔颗粒,核心壳和空心壳结构,以及独特的“on-a-vine”排列,通过利用微型电池内的热响应IDP的相图的亚稳区域。通过多位点非天然氨基酸(UAA)掺入,这些蛋白质微粒也可以是光交联并稳定地萃取到全水环境中。这项工作扩展了人工IDP的功能效用以及这类生物相容性IDP的可用微体系结构,具有潜在的药物递送和组织工程应用。

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