Department of Mechanical and Control Engineering, Tokyo Institute of Technology, Tokyo, Japan.
Nanotechnology. 2010 Oct 1;21(39):395502. doi: 10.1088/0957-4484/21/39/395502. Epub 2010 Sep 1.
Separation and separation-based analysis of biomolecules are fundamentally important techniques in the field of biotechnology. These techniques, however, depend on stochastic processes that intrinsically involve uncertainty, and thus it is not possible to achieve 100% separation accuracy. Theoretically, the ultimate resolution and sensitivity should be realized in a single-molecule system because of the deterministic nature of single-molecule manipulation. Here, we have proposed and experimentally demonstrated the concept of a 'single-molecule sorter' that detects and correctly identifies individual single molecules, realizing the ultimate level of resolution and sensitivity for any separation-based technology. The single-molecule sorter was created using a nanofluidic network consisting of a single inlet channel that branches off into multiple outlet channels. It includes two major functional elements, namely a single-molecule detection and identification element and a flow path switching element to accurately separate single molecules. With this system we have successfully demonstrated the world's first single-molecule sorting using DNA as a sample molecule. In the future, we hope to expand the application of such devices to comprehensive sorting of single-proteins from a single cell. We also believe that in addition to the single-molecule sorting method reported here, other types of single-molecule based processes will emerge and find use in a wide variety of applications.
生物分子的分离和基于分离的分析是生物技术领域中非常重要的技术。然而,这些技术依赖于随机过程,而随机过程本质上涉及不确定性,因此不可能达到 100%的分离精度。从理论上讲,由于单分子操纵的确定性,单分子系统应该能够实现最终的分辨率和灵敏度。在这里,我们提出并实验证明了“单分子分拣器”的概念,该分拣器可以检测和正确识别单个单分子,从而实现任何基于分离的技术的最高分辨率和灵敏度。单分子分拣器使用由单个入口通道分支成多个出口通道的纳米流体网络创建。它包括两个主要的功能元件,即单分子检测和识别元件以及流路切换元件,以准确地分离单分子。通过该系统,我们成功地展示了世界上第一个使用 DNA 作为样品分子的单分子分拣。在未来,我们希望将这种设备的应用扩展到从单个细胞中综合分拣单个蛋白质。我们还相信,除了这里报道的单分子分拣方法之外,其他类型的基于单分子的过程也将出现,并在各种应用中得到应用。