Suppr超能文献

远场显微镜分辨率间隙内单分子的高分辨率共定位

High-resolution colocalization of single molecules within the resolution gap of far-field microscopy.

作者信息

Heinlein Thomas, Biebricher Andreas, Schlüter Pia, Roth Christian Michael, Herten Dirk-Peter, Wolfrum Jürgen, Heilemann Mike, Müller Christian, Tinnefeld Philip, Sauer Markus

机构信息

Institute of Physical Chemistry, University of Heidelberg, Im Neuenheimer Feld 253, 69120 Heidelberg, Germany.

出版信息

Chemphyschem. 2005 May;6(5):949-55. doi: 10.1002/cphc.200400622.

Abstract

To obtain detailed information about the three-dimensional (3D) organization of small biomolecular assemblies with a size of less than 100 nanometers, advanced techniques are required that enable the determination of absolute 3D positions and distances between individual fluorophores well below the resolution limit of conventional light microscopy. We show how spectrally resolved fluorescence lifetime imaging microscopy (SFLIM) can provide significant contributions and allow us to determine distances between conventional individual fluorophores (Bodipy 630/650 and Cy5.5) that are less than 20 nm apart. We take advantage of fluorescent dyes (here Cy5.5 and Bodipy 630/650) that can be efficiently excited by a single pulsed diode laser emitting at 635 nm but differ in their fluorescence lifetime and emission maxima. The potential of the method for ultrahigh colocalization studies is demonstrated by measuring the end-to-end distance between single fluorophores separated by double-stranded DNA of various lengths. Combining SFLIM with polarization-modulated excitation allows us to obtain, simultaneously, information about the relative orientation of fluorophores. Furthermore, we show that the environment-dependent photophysics of conventional fluorophores, that is, photostability, blinking pattern, and the tendency to enter irreversible nonfluorescent states, sets certain limitations to their in vitro and in vivo applications.

摘要

为了获取尺寸小于100纳米的小型生物分子聚集体的三维(3D)组织的详细信息,需要先进的技术,这些技术能够确定单个荧光团之间的绝对3D位置和距离,其精度远低于传统光学显微镜的分辨率极限。我们展示了光谱分辨荧光寿命成像显微镜(SFLIM)如何能做出重要贡献,并使我们能够确定间距小于20纳米的传统单个荧光团(Bodipy 630/650和Cy5.5)之间的距离。我们利用了荧光染料(此处为Cy5.5和Bodipy 630/650),它们可以被发射波长为635纳米的单脉冲二极管激光有效激发,但荧光寿命和发射最大值不同。通过测量由不同长度的双链DNA隔开的单个荧光团之间的端到端距离,证明了该方法在超高共定位研究中的潜力。将SFLIM与偏振调制激发相结合,使我们能够同时获得有关荧光团相对取向的信息。此外,我们表明传统荧光团的环境依赖性光物理性质,即光稳定性、闪烁模式以及进入不可逆非荧光状态的倾向,对其体外和体内应用设置了一定的限制。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验