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首页> 外文期刊>Biomacromolecules >Heparin as a Bundler in a Self-Assembled Fibrous Network of Functionalized Protein-Based Polymers
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Heparin as a Bundler in a Self-Assembled Fibrous Network of Functionalized Protein-Based Polymers

机译:肝素作为功能性蛋白质基聚合物的自组装纤维网络中的捆绑物

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摘要

Nature shows excellent control over the mechanics of fibrous hydrogels by assembling protein, fibers into bundleS, of well-defined dimeosions. Yet, obtaining artificial materials displaying controlled bundling remains a challenge. Here, we developed genetically engineered protein-based polymers, functionalized with heparin-binding KRSR domains and show controlled' bundling using heparin as a binder. The protein polymer forms fibers upon inereasing the pH to physiological values and at higher concentrations fibrous gels. We show that addition of heparin to the protein polymer with incorporated KRSR domains, induces bundling, which results in faster gel formation and stiffer gels. The interactions are--expected to" be primarily electrostatic and fiber bundling has an optimum when the positive charges of KRSR are approximately in balance with the negative: charges of the heparin. Our study suggests that, generally, a straightforward method to control the properties of fibrous gels is to prepare a fiber former with specific binding domains and then simply adding an appropriate amount of binder.
机译:通过将蛋白质,纤维组装成束,以及明确定义的二聚体,自然对纤维水凝胶的力学表现出了极好的控制。然而,获得显示受控捆绑的人造材料仍然是一个挑战。在这里,我们开发了基因工程的基于蛋白质的聚合物,并用结合了肝素的KRSR结构域进行了功能化,并显示了使用肝素作为粘合剂的受控“捆绑”。蛋白质聚合物在将pH增加到生理值时形成纤维,并在较高浓度下形成纤维凝胶。我们表明,肝素添加到具有结合KRSR域的蛋白质聚合物中,会诱导捆绑,从而导致更快的凝胶形成和更硬的凝胶。相互作用“主要是静电”,当KRSR的正电荷与肝素的负电荷大致平衡时,纤维束具有最佳性能。我们的研究表明,通常,一种控制性质的简单方法纤维凝胶的制备是制备具有特定结合域的成纤维剂,然后简单地添加适量的粘合剂。

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