Bringley Joseph F, Wunder Andrew, Howe Andrew M, Wesley Robin D, Qiao Tiecheng A, Liebert Nancy B, Kelley Brian, Minter John, Antalek Brian, Hewitt James M
Research and Development, Eastman Kodak Company, Rochester, New York 14650-02002, USA.
Langmuir. 2006 Apr 25;22(9):4198-207. doi: 10.1021/la0534118.
A novel precision-assembly methodology is described on the basis of the controlled, simultaneous assembly (CSA) of a core nanoparticle substrate and polyelectrolyte solutions. The method is capable of assembly rates at least as fast as 10(16) core particles s(-1) L(-1) and affords concentrated suspensions of stable colloids with an adsorbed polyelectrolyte. The resulting dispersions are highly homogeneous, have a low viscosity and narrow particle-size distribution, and are stable colloids, even at solid concentrations of at least 33 wt %. The adsorption isotherm and the saturation adsorption for polyethylenimine (PEI) assemblies onto a 15 nm silica colloid have been evaluated with 1H NMR spectroscopy. The saturation adsorption is highly dependent upon the pH at assembly and is given by the equation PEIa (micromol m(-2)) = 1.73pH - 1.89, R2 = 0.986, where micromoles refers to the concentration of the EI monomer. The saturation concentration increases from 6.8 micromol m(-2) at pH 5.0 to 13.7 micromol m(-2) at pH 9.0. The adsorbed polyelectrolyte may be cross-linked and thereby permanently fixed to the colloid surface to prepare nanoparticle-polyelectrolyte colloidal assemblies having enhanced colloid stability, high homogeneity, and a high fraction (>80%) of permanently adsorbed polyelectrolyte. These assemblies are stable at physiological pH and ionic strength and may represent ideal substrates for bioconjugation and, ultimately, the design of nanocarriers for in vivo applications.
基于核心纳米颗粒底物与聚电解质溶液的受控同步组装(CSA),描述了一种新型的精密组装方法。该方法的组装速率至少可达10(16)个核心颗粒·秒(-1)·升(-1),并能提供具有吸附聚电解质的稳定胶体的浓缩悬浮液。所得分散体高度均匀,粘度低,粒径分布窄,即使在固体浓度至少为33 wt%时也是稳定的胶体。利用1H NMR光谱法评估了聚乙烯亚胺(PEI)在15 nm二氧化硅胶体上的组装吸附等温线和饱和吸附量。饱和吸附量高度依赖于组装时的pH值,其表达式为PEIa(微摩尔·米(-2))= 1.73pH - 1.89,R2 = 0.986,其中微摩尔指的是EI单体的浓度。饱和浓度从pH 5.0时的6.8微摩尔·米(-2)增加到pH 9.0时的13.7微摩尔·米(-2)。吸附的聚电解质可以交联,从而永久固定在胶体表面,以制备具有增强的胶体稳定性、高均匀性和高比例(>80%)永久吸附聚电解质的纳米颗粒-聚电解质胶体组装体。这些组装体在生理pH值和离子强度下是稳定的,可能代表生物共轭的理想底物,并最终成为体内应用纳米载体设计的理想选择。