Clack Nathan G, Salaita Khalid, Groves Jay T
Biophysics Graduate Group, University of California, Berkeley, California 94720-3220, USA.
Nat Biotechnol. 2008 Jul;26(7):825-30. doi: 10.1038/nbt1416. Epub 2008 Jun 29.
DNA microarrays are used for gene-expression profiling, single-nucleotide polymorphism detection and disease diagnosis. A persistent challenge in this area is the lack of microarray screening technology suitable for integration into routine clinical care. Here, we describe a method for sensitive and label-free electrostatic readout of DNA or RNA hybridization on microarrays. The electrostatic properties of the microarray are measured from the position and motion of charged microspheres randomly dispersed over the surface. We demonstrate nondestructive electrostatic imaging with 10-mum lateral resolution over centimeter-length scales, which is four-orders of magnitude larger than that achievable with conventional scanning electrostatic force microscopy. Changes in surface charge density as a result of specific hybridization can be detected and quantified with 50-pM sensitivity, single base-pair mismatch selectivity and in the presence of complex background. Because the naked eye is sufficient to read out hybridization, this approach may facilitate broad application of multiplexed assays.
DNA微阵列用于基因表达谱分析、单核苷酸多态性检测和疾病诊断。该领域一直面临的挑战是缺乏适合整合到常规临床护理中的微阵列筛选技术。在此,我们描述了一种用于在微阵列上对DNA或RNA杂交进行灵敏且无标记的静电读出的方法。微阵列的静电特性是通过随机分散在表面上的带电微球的位置和运动来测量的。我们展示了在厘米级尺度上具有10微米横向分辨率的无损静电成像,这比传统扫描静电力显微镜所能达到的分辨率大四个数量级。由于特异性杂交导致的表面电荷密度变化能够以50皮摩尔的灵敏度、单碱基对错配选择性以及在复杂背景存在的情况下被检测和定量。因为肉眼足以读出杂交情况,所以这种方法可能会促进多重检测的广泛应用。