Acuna Guillermo, Grohmann Dina, Tinnefeld Philip
NanoBioSciences Group, Institute for Physical and Theoretical Chemistry, Hans-Sommer-Strasse 10, 38106 Braunschweig, Germany.
FEBS Lett. 2014 Oct 1;588(19):3547-52. doi: 10.1016/j.febslet.2014.06.016. Epub 2014 Jun 10.
Single-molecule fluorescence spectroscopy has become an important research tool in the life sciences but a number of limitations hinder the widespread use as a standard technique. The limited dynamic concentration range is one of the major hurdles. Recent developments in the nanophotonic field promise to alleviate these restrictions to an extent that even low affinity biomolecular interactions can be studied. After motivating the need for nanophotonics we introduce the basic concepts of nanophotonic devices such as zero mode waveguides and nanoantennas. We highlight current applications and the future potential of nanophotonic approaches when combined with biological systems and single-molecule spectroscopy.
单分子荧光光谱法已成为生命科学中的一项重要研究工具,但一些局限性阻碍了它作为一种标准技术的广泛应用。有限的动态浓度范围是主要障碍之一。纳米光子学领域的最新进展有望在一定程度上缓解这些限制,从而能够研究甚至是低亲和力的生物分子相互作用。在阐述了对纳米光子学的需求之后,我们介绍了纳米光子器件的基本概念,如零模式波导和纳米天线。我们重点介绍了纳米光子学方法与生物系统和单分子光谱学相结合时的当前应用和未来潜力。