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掺入支持的磷脂单层中的脂肽在低掺入水平下具有高比活性。

Lipopeptides incorporated into supported phospholipid monolayers have high specific activity at low incorporation levels.

作者信息

Jensen Tor W, Hu Bi-Huang, Delatore Shara M, Garcia Ana Sofia, Messersmith Phillip B, Miller William M

机构信息

Department of Chemical and Biological Engineering, Northwestern University, 2145 Sheridan Road, Evanston, Illinois 60208, USA.

出版信息

J Am Chem Soc. 2004 Nov 24;126(46):15223-30. doi: 10.1021/ja048684o.

Abstract

The ability to present cell adhesion molecule (CAM) ligands in controlled amounts on a culture surface would greatly facilitate the control of cell growth and differentiation. Supported lipid monolayer/bilayer systems have previously been developed that allow for presentation of CAM ligands for cell interaction; however, these systems have employed peptide loadings much higher than those used in poly(ethylene glycol) (PEG)-based immobilization systems. We report the development of synthetic methods that can be used for the efficient and versatile creation of many linear and cyclic lipid-linked peptide moieties. Using RGD-based peptides for the alpha5beta1 integrin as a model system, we have demonstrated that these lipopeptides support efficient cell binding and spreading at CAM ligand loadings as low as 0.1 mol %, which is well below that previously reported for supported lipid systems. Engineered lipopeptide-based surfaces offer unique presentation options not possible with other immobilization systems, and the high activity at low loadings we have shown here may be extremely useful in presenting multiple CAM ligands for studying cell growth, differentiation, and signaling.

摘要

能够在培养表面以可控量呈现细胞黏附分子(CAM)配体,将极大地促进对细胞生长和分化的控制。之前已开发出支持脂质单层/双层系统,可用于呈现CAM配体以进行细胞相互作用;然而,这些系统所采用的肽负载量远高于基于聚乙二醇(PEG)的固定系统。我们报告了合成方法的开发,该方法可用于高效且通用地创建许多线性和环状脂质连接肽部分。以用于α5β1整合素的基于RGD的肽作为模型系统,我们已证明这些脂肽在低至0.1 mol%的CAM配体负载量下就能支持有效的细胞黏附和铺展,这远低于之前报道的支持脂质系统的负载量。基于工程化脂肽的表面提供了其他固定系统无法实现的独特呈现选项,并且我们在此展示的低负载量下的高活性在呈现多种CAM配体以研究细胞生长、分化和信号传导方面可能极其有用。

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