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Expanding the Functional Scope of the Fmoc‐Diphenylalanine Hydrogelator by Introducing a Rigidifying and Chemically Active Urea Backbone Modification

机译:通过引入刚性和化学活性的尿素骨干改性剂来扩大Fmoc-二苯丙氨酸水凝胶剂的功能范围

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摘要

Peptidomimetic low‐molecular‐weight hydrogelators, a class of peptide‐like molecules with various backbone amide modifications, typically give rise to hydrogels of diverse properties and increased stability compared to peptide hydrogelators. Here, a new peptidomimetic low‐molecular‐weight hydrogelator is designed based on the well‐studied ‐fluorenylmethoxycarbonyl diphenylalanine (Fmoc‐FF) peptide by replacing the amide bond with a frequently employed amide bond surrogate, the urea moiety, aiming to increase hydrogen bonding capabilities. This designed ureidopeptide, termed Fmoc—Phe—NHCONH—Phe—OH (Fmoc‐FuF), forms hydrogels with improved mechanical properties, as compared to those formed by the unmodified Fmoc‐FF. A combination of experimental and computational structural methods shows that hydrogen bonding and aromatic interactions facilitate Fmoc‐FuF gel formation. The Fmoc‐FuF hydrogel possesses properties favorable for biomedical applications, including shear thinning, self‐healing, and in vitro cellular biocompatibility. Additionally, the Fmoc‐FuF, but not Fmoc‐FF, hydrogel presents a range of functionalities useful for other applications, including antifouling, slow release of urea encapsulated in the gel at a high concentration, selective mechanical response to fluoride anions, and reduction of metal ions into catalytic nanoparticles. This study demonstrates how a simple backbone modification can enhance the mechanical properties and functional scope of a peptide hydrogel.
机译:拟肽低分子量水凝胶剂是一类具有各种主链酰胺修饰的肽样分子,与肽水凝胶剂相比,通常可产生各种性质的水凝胶并提高稳定性。在这里,基于经过充分研究的芴基甲氧基羰基二苯丙氨酸(Fmoc-FF)肽,通过使用经常使用的酰胺键替代物脲部分取代酰胺键,设计了一种新的拟肽低分子量水凝胶剂,旨在增加氢键能力。与未经修饰的Fmoc-FF形成的水凝胶相比,这种设计的脲肽称为Fmoc-Phe-NHCONH-Phe-OH(Fmoc-FuF)形成了具有改善的机械性能的水凝胶。实验和计算结构方法的结合表明,氢键和芳族相互作用促进了Fmoc-FuF凝胶的形成。 Fmoc-FuF水凝胶具有有利于生物医学应用的特性,包括剪切稀化,自我修复和体外细胞生物相容性。此外,Fmoc-FuF(但不是Fmoc-FF)水凝胶具有一系列可用于其他应用的功能,包括防污,高浓度胶囊中尿素的缓慢释放,对氟阴离子的选择性机械响应以及还原性金属离子进入催化纳米颗粒。这项研究证明了简单的骨架修饰如何可以增强肽水凝胶的机械性能和功能范围。

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