Viscoelastic characterization of the lipid cubic phase provides insights into high-viscosity extrusion injection for XFEL experiments

D Dmitrii Zabelskii E Ekaterina Round H Huijong Han D David von Stetten R Romain Letrun C Chan Kim T Tokushi Sato D Diogo V. M. Melo R Raphael de Wijn K Konstantin Kharitonov P Peter Smyth K Katerina Doerner M Marco Kloos (European X-ray Free Electron Laser, Holzkoppel 4, 22869 Schenefeld, Germany) T Thomas Dietze L Luis Lopez Morillo R Richard Bean A Adam Round (European X-ray Free Electron Laser, Holzkoppel 4, 22869 Schenefeld, Germany)

Abstract

Abstract Serial crystallography (SX) is a powerful method for determining macromolecular structures, enabled by the advent of X-ray free-electron lasers (XFELs). SX experiments require the continuous delivery of microcrystals, achievable through liquid jets, high-viscosity extrusion (HVE) jets, and fixed-target methods. The lipid cubic phase (LCP) is a lipid-based medium commonly used for membrane protein crystallization and as a carrier medium for HVE injection. In this study, we present a rheometric characterization of LCP media and demonstrate that sample viscosity correlates well with the injection stability and, therefore, can effectively predict sample stability during HVE jetting. Using this approach, we determined the viscosity range corresponding to the stable, metastable, and unstable jetting regions. The critical viscosity values for the metastable and unstable jetting regions are 7 × 10 5 and 10 4  mPa⋅s, measured at the 0.3 s -1 shear rate. We show that ambient humidity is crucial for rheometric and fixed-target experiments involving LCP-embedded crystals. Specifically, LCP-embedded crystals rapidly lose diffraction quality when exposed to ambient humidity below 80%. Additionally, we demonstrate that sample viscosity measured in the rheometric experiment can help determine the necessary amount of stabilizing additive for HVE jet optimization. This approach was successfully tested on LCP mixed with long-chain polyethylene glycol and stabilized with Pluronic F-127 polymer.

Article Details

Volume / Issue Vol. 15, Issue 1
Published November 07, 2025
ISSN 2045-2322
Publisher Nature Portfolio

Journal Info

Scientific Reports

Nature Portfolio

ISSN: 2045-2322 Open Access Life Sciences

Authors (17)

D

Dmitrii Zabelskii

E

Ekaterina Round

H

Huijong Han

D

David von Stetten

R

Romain Letrun

C

Chan Kim

T

Tokushi Sato

D

Diogo V. M. Melo

R

Raphael de Wijn

K

Konstantin Kharitonov

P

Peter Smyth

K

Katerina Doerner

M

Marco Kloos

European X-ray Free Electron Laser, Holzkoppel 4, 22869 Schenefeld, Germany

T

Thomas Dietze

L

Luis Lopez Morillo

R

Richard Bean

A

Adam Round

European X-ray Free Electron Laser, Holzkoppel 4, 22869 Schenefeld, Germany