Author:
Deng Junjing,Vine David J.,Chen Si,Nashed Youssef S. G.,Jin Qiaoling,Phillips Nicholas W.,Peterka Tom,Ross Rob,Vogt Stefan,Jacobsen Chris J.
Abstract
Trace metals play important roles in normal and in disease-causing biological functions. X-ray fluorescence microscopy reveals trace elements with no dependence on binding affinities (unlike with visible light fluorophores) and with improved sensitivity relative to electron probes. However, X-ray fluorescence is not very sensitive for showing the light elements that comprise the majority of cellular material. Here we show that X-ray ptychography can be combined with fluorescence to image both cellular structure and trace element distribution in frozen-hydrated cells at cryogenic temperatures, with high structural and chemical fidelity. Ptychographic reconstruction algorithms deliver phase and absorption contrast images at a resolution beyond that of the illuminating lens or beam size. Using 5.2-keV X-rays, we have obtained sub–30-nm resolution structural images and ∼90-nm–resolution fluorescence images of several elements in frozen-hydrated green algae. This combined approach offers a way to study the role of trace elements in their structural context.
Funder
HHS | NIH | National Institute of General Medical Sciences
HHS | NIH | National Center for Research Resources
U.S. Department of Energy
Publisher
Proceedings of the National Academy of Sciences
Cited by
149 articles.
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