前往化源商城

PLoS ONE 2013-01-01

Resolution doubling in 3D-STORM imaging through improved buffers.

Nicolas Olivier, Debora Keller, Pierre Gönczy, Suliana Manley

文献索引:PLoS ONE 8(7) , e69004, (2013)

全文:HTML全文

摘要

Super-resolution imaging methods have revolutionized fluorescence microscopy by revealing the nanoscale organization of labeled proteins. In particular, single-molecule methods such as Stochastic Optical Reconstruction Microscopy (STORM) provide resolutions down to a few tens of nanometers by exploiting the cycling of dyes between fluorescent and non-fluorescent states to obtain a sparse population of emitters and precisely localizing them individually. This cycling of dyes is commonly induced by adding different chemicals, which are combined to create a STORM buffer. Despite their importance, the composition of these buffers has scarcely evolved since they were first introduced, fundamentally limiting what can be resolved with STORM. By identifying a new chemical suitable for STORM and optimizing the buffer composition for Alexa-647, we significantly increased the number of photons emitted per cycle by each dye, providing a simple means to enhance the resolution of STORM independently of the optical setup used. Using this buffer to perform 3D-STORM on biological samples, we obtained images with better than 10 nanometer lateral and 30 nanometer axial resolution.

相关化合物

结构式 名称/CAS号 全部文献
过氧化氢酶 结构式 过氧化氢酶
CAS:9001-05-2
吡喃糖氧化酶 来源于革盖菌属 结构式 吡喃糖氧化酶 来源于革盖菌属
CAS:37250-80-9