Foam film vitrification for cryo-EM

Y Yue Zhang B Biplob Nandy (Medical Research Council Laboratory of Molecular Biology) K Kasim Sader (Protein Sciences, Structure & Biophysics, Discovery Sciences) C Christopher J. Russo (Medical Research Council Laboratory of Molecular Biology) J Jan Löwe (Medical Research Council Laboratory of Molecular Biology)

Abstract

Abstract Electron cryomicroscopy (cryo-EM) has revolutionised structural biology, enhancing applicability, size limits and speed. Despite these successes, cryo-EM sample preparation remains a major bottleneck for routinely achieving high-resolution structures through single particle analysis. Challenges such as inconsistent ice thicknesses, air-water interface interactions and preferred particle orientation persist. Here, we introduce a blot-free vitrification method that uses free-standing surfactant-stabilised foam films to address some of these issues. The method achieves uniform ice thicknesses, enables thickness control of the foam film prior to vitrification, and for some specimens enhances orientation distribution efficiency. Furthermore, it reduces particle adsorption to carbon foil on the specimen support. The method simplifies cryo-EM specimen preparation, offering improved control over ice thickness and particle orientation, to help streamline and accelerate structure determination.

Article Details

Volume / Issue Vol. 16, Issue 1
Published July 04, 2025
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (5)

Y

Yue Zhang

B

Biplob Nandy

Medical Research Council Laboratory of Molecular Biology

K

Kasim Sader

Protein Sciences, Structure & Biophysics, Discovery Sciences

C

Christopher J. Russo

Medical Research Council Laboratory of Molecular Biology

J

Jan Löwe

Medical Research Council Laboratory of Molecular Biology