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通过芴甲氧羰基固相反应合成单功能化金纳米粒子。

Synthesis of monofunctionalized gold nanoparticles by fmoc solid-phase reactions.

作者信息

Sung Kie-Moon, Mosley David W, Peelle Beau R, Zhang Shuguang, Jacobson Joseph M

机构信息

Massachusetts Institute of Technology, Cambridge, 02139 USA.

出版信息

J Am Chem Soc. 2004 Apr 28;126(16):5064-5. doi: 10.1021/ja049578p.

DOI:10.1021/ja049578p
PMID:15099078
Abstract

In this communication, solid-phase reactions for the synthesis of Lys-monofunctionalized gold nanoparticles are described. A controlled and selective fabrication of linear nanoparticle arrays can be achieved through peptide linkage systems, and therefore it is essential to prepare Fmoc amino acid nanoparticle building blocks susceptible to Fmoc solid-phase peptide synthesis. Gold nanoparticles containing carboxylic acids (2) in the organic shell were covalently ligated to Lys on solid supports through amide bond coupling reactions. We employed Fmoc-Lys-substituted polymer resins such as Fmoc-Lys-Wang or Fmoc-Lys-HMPA-PEGA. The low density of Lys on the matrix enabled 2 nm-sized gold nanoparticles to react with Lys in a 1:1 ratio. Subsequent cleavage reactions using 60% TFA reagent resulted in Lys transfer from the solid matrix to gold nanoparticles, and the Fmoc-Lys-monofunctionalized gold nanoparticles (5) were obtained with 3-15% yield. Synthesis using HMPA-PEGA resin increased productivity due to the superior swelling properties of PEGA resin in DMF. Monofunctionalization of nanoparticles was microscopically characterized using TEM for the ethylenediamine-bridged nanoparticle dimers (6). By counting the number of 6, we found that at least 60% of cleaved nanoparticles were monofunctionalized by Lys. This method is highly selective and efficient for the preparation of monofunctionalized nanoparticles.

摘要

在本通讯中,描述了用于合成赖氨酸单功能化金纳米颗粒的固相反应。通过肽连接系统可以实现线性纳米颗粒阵列的可控和选择性制备,因此制备易于进行Fmoc固相肽合成的Fmoc氨基酸纳米颗粒构建块至关重要。有机壳中含有羧酸的金纳米颗粒(2)通过酰胺键偶联反应与固相载体上的赖氨酸共价连接。我们使用了Fmoc-Lys取代的聚合物树脂,如Fmoc-Lys-Wang或Fmoc-Lys-HMPA-PEGA。基质上赖氨酸的低密度使得2纳米大小的金纳米颗粒能够与赖氨酸以1:1的比例反应。随后使用60%的TFA试剂进行裂解反应,导致赖氨酸从固体基质转移到金纳米颗粒上,以3-15%的产率获得了Fmoc-Lys单功能化的金纳米颗粒(5)。由于PEGA树脂在DMF中具有优异的溶胀性能,使用HMPA-PEGA树脂进行合成提高了生产率。使用透射电子显微镜对乙二胺桥连的纳米颗粒二聚体(6)进行微观表征,以确定纳米颗粒的单功能化情况。通过计算6的数量,我们发现至少60%的裂解纳米颗粒被赖氨酸单功能化。该方法对于制备单功能化纳米颗粒具有高度的选择性和高效性。

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