Walker David A, Gupta Vinay K
Department of Chemical and Biomedical Engineering, University of South Florida, Tampa, FL 33620, USA.
Nanotechnology. 2008 Oct 29;19(43):435603. doi: 10.1088/0957-4484/19/43/435603. Epub 2008 Sep 22.
Directing the self-assembly of colloidal particles into nanostructures is of great interest in nanotechnology. Here, reversible end-to-end assembly of gold nanorods (GNR) is induced by pH-dependent changes in the secondary conformation of a disulfide-modified poly(L-glutamic acid) (SSPLGA). The disulfide anchoring group drives chemisorption of the polyacid onto the end of the gold nanorods in an ethanolic solution. A layer of poly(vinyl pyrrolidone) is adsorbed on the positively charged, surfactant-stabilized GNR to screen the surfactant bilayer charge and provide stability for dispersion of the GNR in ethanol. For comparison, irreversible end-to-end assembly using a bidentate ligand, namely 1,6-hexanedithiol, is also performed. Characterization of the modified GNR and its end-to-end linking behavior using SSPLGA and hexanedithiol is performed using dynamic light scattering (DLS), UV-vis absorption spectroscopy and transmission electron microscopy (TEM). Experimental results show that, in a colloidal solution of GNR-SSPLGA at a pH∼3.5, where the PLGA is in an α-helical conformation, the modified GNR self-assemble into one-dimensional nanostructures. The linking behavior can be reversed by increasing the pH (>8.5) to drive the conformation of the polypeptide to a random coil and this reversal with pH occurs rapidly within minutes. Cycling the pH multiple times between low and high pH values can be used to drive the formation of the nanostructures of the GNR and disperse them in solution.
在纳米技术领域,引导胶体颗粒自组装成纳米结构备受关注。在此,通过二硫键修饰的聚(L-谷氨酸)(SSPLGA)二级构象的pH依赖性变化诱导金纳米棒(GNR)进行可逆的端对端组装。二硫键锚定基团在乙醇溶液中驱动聚酸化学吸附到金纳米棒的末端。一层聚乙烯吡咯烷酮吸附在带正电的、表面活性剂稳定的GNR上,以屏蔽表面活性剂双层电荷,并为GNR在乙醇中的分散提供稳定性。为作比较,还使用双齿配体1,6-己二硫醇进行不可逆的端对端组装。使用动态光散射(DLS)、紫外可见吸收光谱和透射电子显微镜(TEM)对使用SSPLGA和己二硫醇修饰的GNR及其端对端连接行为进行表征。实验结果表明,在pH约为3.5的GNR-SSPLGA胶体溶液中,此时PLGA呈α-螺旋构象,修饰后的GNR自组装成一维纳米结构。通过提高pH值(>8.5)以促使多肽构象转变为无规卷曲,这种连接行为可以逆转,且这种pH诱导的逆转在几分钟内迅速发生。在低pH值和高pH值之间多次循环pH值可用于驱动GNR纳米结构的形成并使其在溶液中分散。