Wyss Institute, Harvard University, Boston, Massachusetts, USA.
PLoS One. 2013 Jul 31;8(7):e69058. doi: 10.1371/journal.pone.0069058. Print 2013.
We present "molecular threading", a surface independent tip-based method for stretching and depositing single and double-stranded DNA molecules. DNA is stretched into air at a liquid-air interface, and can be subsequently deposited onto a dry substrate isolated from solution. The design of an apparatus used for molecular threading is presented, and fluorescence and electron microscopies are used to characterize the angular distribution, straightness, and reproducibility of stretched DNA deposited in arrays onto elastomeric surfaces and thin membranes. Molecular threading demonstrates high straightness and uniformity over length scales from nanometers to micrometers, and represents an alternative to existing DNA deposition and linearization methods. These results point towards scalable and high-throughput precision manipulation of single-molecule polymers.
我们提出了“分子穿线”,这是一种表面独立的基于尖端的方法,用于拉伸和沉积单链和双链 DNA 分子。DNA 在气液界面上被拉伸,并可以随后沉积到与溶液隔离的干燥基底上。介绍了用于分子穿线的装置的设计,并使用荧光和电子显微镜来表征在弹性体表面和薄膜上以阵列形式沉积的拉伸 DNA 的角分布、直线度和重现性。分子穿线在从纳米到微米的长度尺度上表现出高度的直线度和均匀性,是现有 DNA 沉积和线性化方法的替代方法。这些结果表明可以对单分子聚合物进行可扩展的、高通量的精密操作。