Basabe-Desmonts Lourdes, Van der Baan Frederieke, Zimmerman Rebecca S, Reinhoudt David N, Crego-Calama Mercedes
Department of Supramolecular Chemistry and Technology, MESA+ Institute for Nanotechnology, University of Twente, P.O. Box 217, 7500 AE Enschede, The Netherlands.
Sensors (Basel). 2007 Sep 5;7(9):1731-1746. doi: 10.3390/s7091731.
Fluorescent self assembled monolayers (SAMs) on glass were previouslydeveloped in our group as new sensing materials for metal ions. These fluorescent SAMs arecomprised by fluorophores and small molecules sequentially deposited on a monolayer onglass. The preorganization provided by the surface avoids the need for complex receptordesign, allowing for a combinatorial approach to sensing systems based on small molecules.Now we show the fabrication of an effective microarray for the screening of metal ions andthe properties of the sensing SAMs. A collection of fluorescent sensing SAMs wasgenerated by combinatorial methods and immobilized on the glass surfaces of a custom-made 140 well microtiter-plate. The resulting libraries are easily measured and show variedresponses to a series cations such as Cu , Co , Pb , Ca and Zn . These surfaces are notdesigned to complex selectively a unique analyte but rather they are intended to producefingerprint type responses to a range of analytes by less specific interactions. The unselectiveresponses of the library to the presence of different cations generate a characteristic patternfor each analyte, a "finger print" response.
荧光自组装单分子层(SAMs)在玻璃上是我们小组先前开发的用于金属离子的新型传感材料。这些荧光SAMs由荧光团和小分子依次沉积在玻璃上的单分子层组成。表面提供的预组织避免了复杂受体设计的需要,允许基于小分子的传感系统采用组合方法。现在我们展示了一种用于筛选金属离子的有效微阵列的制备以及传感SAMs的性质。通过组合方法生成了一系列荧光传感SAMs,并固定在定制的140孔微量滴定板的玻璃表面上。所得文库易于测量,并且对诸如铜、钴、铅、钙和锌等一系列阳离子表现出不同的响应。这些表面并非设计用于选择性地络合单一分析物,而是旨在通过不太特异的相互作用对一系列分析物产生指纹型响应。文库对不同阳离子存在的非选择性响应为每种分析物生成了特征模式,即“指纹”响应。