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二肽定向自组装形成超薄水凝胶膜。

Directed self-assembly of dipeptides to form ultrathin hydrogel membranes.

机构信息

Department of Chemistry, University of Bath, BA2 7AY, United Kingdom.

出版信息

J Am Chem Soc. 2010 Apr 14;132(14):5130-6. doi: 10.1021/ja909579p.

Abstract

The dipeptide amphiphile Fmoc-Leu-Gly-OH has been induced to self-assemble into thin surface-supported hydrogel gel films and gap-spanning hydrogel membranes. The thickness can be closely controlled, giving films/membranes from tens of nanometers to millimeters thick. SEM and TEM have confirmed that the dipeptides self-assemble to form fibers, with the membranes resembling a dense "mat" of entangled fibers. The films and membranes were stable once formed. The films could be reversibly dried and collapsed, then reswollen to regain the gel structure.

摘要

二肽两亲体 Fmoc-Leu-Gly-OH 已被诱导自组装成薄的表面支撑水凝胶凝胶膜和间隙跨越水凝胶膜。厚度可以被紧密控制,得到从几十纳米到几毫米厚的膜/膜。SEM 和 TEM 已经证实二肽自组装形成纤维,而膜类似于密集的“纤维网”。形成后,膜和膜是稳定的。膜可以可逆地干燥和塌陷,然后再溶胀以恢复凝胶结构。

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