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首页> 外文期刊>Angewandte Chemie >Bioactive Seed Layer for Surface-Confined Self-Assembly of Peptides
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Bioactive Seed Layer for Surface-Confined Self-Assembly of Peptides

机译:多肽的表面受限自组装的生物活性种子层

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摘要

The design and control of molecular systems that self-assemble spontaneously and exclusively at or near an interface represents a real scientific challenge. We present here a new concept, an active seed layer that allows to overcome this challenge. It is based on enzyme-assisted self-assembly. An enzyme, alkaline phosphatase, which transforms an original peptide, Fmoc-FFY(PO42-), into an efficient gelation agent by dephosphorylation, is embedded in a polyelectrolyte multilayer and constitutes the "reaction motor". A seed layer composed of a polyelectrolyte covalently modified by anchoring hydrogelator peptides constitutes the top of the multilayer. This layer is the nucleation site for the Fmoc-FFY peptide self-assembly. When such a film is brought in contact with a Fmoc-FFY-(PO42-) solution, a nanofiber network starts to form almost instantaneously which extents up to several micrometers into the solution after several hours. We demonstrate that the active seed layer allows convenient control over the self-assembly kinetics and the geometric features of the fiber network simply by changing its peptide density.
机译:自发地在界面处或界面附近自组装的分子系统的设计和控制是一个真正的科学挑战。我们在这里提出一个新概念,即可以克服这一挑战的有源种子层。它基于酶辅助的自组装。碱性磷酸酶通过脱磷酸作用将原始肽Fmoc-FFY(PO42-)转化为有效的胶凝剂,并嵌入到聚电解质多层膜中,构成“反应马达”。由锚定水凝胶肽共价修饰的聚电解质组成的种子层构成了多层的顶部。该层是Fmoc-FFY肽自组装的成核位点。当这种薄膜与Fmoc-FFY-(PO42-)溶液接触时,纳米纤维网络几乎立即开始形成,并在数小时后延伸到溶液中达几微米。我们证明,通过简单地改变其肽密度,活性种子层可以方便地控制纤维网络的自组装动力学和几何特征。

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