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Dopamine Self-Polymerization as a Simple and Powerful Tool to Modulate the Viscoelastic Mechanical Properties of Peptide-Based Gels

机译:多巴胺自聚合作为一种简单而强大的工具来调节肽基凝胶的粘弹性机械性能

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摘要

Dopamine is a small versatile molecule used for various biotechnological and biomedical applications. This neurotransmitter, in addition to its biological role, can undergo oxidative self-polymerization to yield polydopamine, a robust universal coating material. Herein, we harness dopamine self-polymerization to modulate the viscoelastic mechanical properties of peptide-based gels, expanding their ever-growing application potential. By combining rapid peptide assembly with slower dopamine auto-polymerization, a double network gel is formed, where the fibrillar peptide gel network serves as a scaffold for polydopamine deposition, allowing polydopamine to interpenetrate the gel network as well as establishing crosslinks within the matrix. We have shown that triggering the assembly of a lysine-rich peptide gelator in the presence of dopamine can increase the mechanical rigidity of the resultant gel by a factor of 90 in some cases, while retaining the gel’s shear thin-recovery behavior. We further investigate how factors such as polymerization time, dopamine concentration and peptide concentration alter the mechanical properties of the resultant gel. The hybrid peptide–dopamine gel systems were characterized using rheological measurements, circular dichroism spectroscopy and transmission electron microscopy. Overall, triggering peptide gelation in the presence of dopamine represents a simple yet powerful approach to modulate the viscoelastic mechanical properties of peptide-based gels.
机译:多巴胺是用于各种生物技术和生物医学应用的小通用分子。这种神经递质除了其生物学作用之外,还可以进行氧化自聚合以产生多碳胺,这是一种稳健的通用涂层材料。在此,我们利用多巴胺自聚合来调节肽基凝胶的粘弹性机械性能,扩大其不断增长的应用潜力。通过将具有较慢的多巴胺自聚合的快速肽组件组合,形成双网络凝胶,其中纤维肽肽凝胶网络用作用于多胺沉积的支架,允许多稗胺渗透凝胶网络以及建立基质内的交联。我们已经表明,在多巴胺存在下触发富含赖氨酸的肽凝胶炉的组装可以在某些情况下将所得凝胶的机械刚度增加了90倍,同时保持凝胶的剪切薄恢复行为。我们进一步研究了聚合时间,多巴胺浓度和肽浓度的因素如何改变所得凝胶的机械性能。使用流变测量,圆形二色性谱光谱和透射电子显微镜表征杂化肽 - 多巴胺凝胶系统。总体而言,在多巴胺存在下触发肽凝胶化代表一种简单但强大的方法来调节肽基凝胶的粘弹性机械性能。

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