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不对称肽两亲分子在水中自组装成具有亲水性核心和表面的纳米纤维。

Aqueous self-assembly of unsymmetric Peptide bolaamphiphiles into nanofibers with hydrophilic cores and surfaces.

作者信息

Claussen Randal C, Rabatic Bryan M, Stupp Samuel I

机构信息

Department of Chemistry, Northwestern University, Evanston, Illinois 60208, USA.

出版信息

J Am Chem Soc. 2003 Oct 22;125(42):12680-1. doi: 10.1021/ja035882r.

Abstract

Unsymmetric peptide bolaamphiphiles that incorporate (l-glutamyl)3glycine at one terminus and either tetraethylene glycol or aspartic acid at the other were found to form hydrogels at low wt %, presumably by self-assembling into nanofibers presenting (l-glutamyl)3glycine at their surfaces and burying the second headgroup at their cores. Transmission electron microscopy measurements on 1 wt % gels negatively stained with phosphotungstic acid and positively stained with uranyl acetate show one-dimensional objects with diameters of 5 nm and lengths in excess of 1 mum. Circular dichroism and solid-state FTIR spectra indicate the adoption of beta-sheet structure within the nanofibers.

摘要

不对称肽两亲分子在一端含有(L-谷氨酰基)3甘氨酸,另一端含有四甘醇或天冬氨酸,发现在低重量百分比下能形成水凝胶,大概是通过自组装成纳米纤维,纳米纤维表面呈现(L-谷氨酰基)3甘氨酸,而第二个头基埋于其核心。用磷钨酸负染色和醋酸铀正染色的1重量%水凝胶的透射电子显微镜测量显示,一维物体直径为5纳米,长度超过1微米。圆二色性和固态傅里叶变换红外光谱表明纳米纤维内采用了β-折叠结构。

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