Ceramics Division, Material Measurement Laboratory, National Institute of Standards and Technology, Gaithersburg, Maryland 20899, USA.
J Phys Chem B. 2012 Mar 15;116(10):3138-47. doi: 10.1021/jp211256f. Epub 2012 Mar 5.
A necessary step in advancing the use of polyethylene glycol (PEG) surface coatings in critical biotechnological applications such as cancer treatments is to provide direct and reliable nanoscale property characterization. Measurements for such characterization are currently provided by scanning probe methods, which are capable of assessing heterogeneity of both surface coverage and properties with nanoscale spatial resolution. In particular, atomic force microscopy (AFM) can be used to detect and quantify the heterogeneity of surface coverage, whereas atomic force spectroscopy can be used to determine mechanical properties, thereby revealing possible heterogeneity of properties within coatings. In this work, AFM and force spectroscopy were used to characterize the morphology and mechanical properties of thiol-functionalized PEG surface coatings on flat gold substrates in aqueous PEG solution. Thiol-functionalized PEG offers a direct and simple method of attachment to gold substrates without intermediate anchoring layers and therefore can be exploited in developing PEG-functionalized gold nanoparticles. AFM was used to investigate the morphology of the PEG coatings as a function of molecular weight; the commonly observed coverage was in the form of sparse, brushlike islands. Similarly, force spectroscopy was utilized to study the mechanical properties of the PEG coatings in compression and tension as a function of molecular weight. A constitutive description of the mechanical properties of PEG brushes was achieved through a combinatorial analysis of the statistical responses acquired in both compression and tension tests. Such a statistical characterization provides a straightforward procedure to assess the nanoscale heterogeneity in the morphology and properties of PEG coverage.
推进聚乙二醇(PEG)表面涂层在癌症治疗等关键生物技术应用中的使用的必要步骤是提供直接和可靠的纳米级特性描述。此类特性描述的测量目前由扫描探针方法提供,该方法能够以纳米级空间分辨率评估表面覆盖率和特性的异质性。特别是原子力显微镜(AFM)可用于检测和量化表面覆盖率的异质性,而原子力光谱可用于确定机械性能,从而揭示涂层内可能存在的性能异质性。在这项工作中,使用 AFM 和力谱法来表征在水溶液中的 PEG 溶液中金平面基底上的巯基功能化 PEG 表面涂层的形态和机械性能。巯基功能化 PEG 提供了一种直接且简单的方法将其附着到金基底上,而无需中间锚固层,因此可以用于开发 PEG 功能化的金纳米粒子。使用 AFM 研究 PEG 涂层的形态作为分子量的函数;通常观察到的覆盖形式是稀疏的,刷状的岛。同样,力谱法用于研究压缩和拉伸时 PEG 涂层的机械性能作为分子量的函数。通过对压缩和拉伸测试中获得的统计响应进行组合分析,实现了 PEG 刷机械性能的本构描述。这种统计特性提供了一种评估 PEG 覆盖的形态和性能的纳米级异质性的简单方法。