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ComplexEye: a multi-lens array microscope for high-throughput embedded immune cell migration analysis

delete2023-12-11
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OA
AI
Z
Zülal Cibir
J
Jacqueline Hassel
J
Justin Sonneck
L
Lennart Kowitz
A
Alexander Beer
A
Andreas Kraus
G
Gabriel Hallekamp
M
Martin Rosenkranz
P
Pascal Raffelberg
S
Sven Olfen
K
Kamil Smilowski
R
Roman Burkard
I
Iris Helfrich
A
Ali Ata Tuz
V
Vikramjeet Singh
S
Susmita Ghosh
A
Albert Sickmann
A
Anne-Kathrin Klebl
J
Jan Eickhoff
B
Bert Klebl
K
Karsten Seidl
J
Jianxu Chen
A
Anton Grabmaier
R
Reinhard Viga *
M
Matthias Gunzer *
DOI:10.1038/s41467-023-43765-3delete
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Abstract

Abstract

En 中文
Autonomous migration is essential for the function of immune cells such as neutrophils and plays an important role in numerous diseases. The ability to routinely measure or target it would offer a wealth of clinical applications. Video microscopy of live cells is ideal for migration analysis, but cannot be performed at sufficiently high-throughput (HT). Here we introduce ComplexEye, an array microscope with 16 independent aberration-corrected glass lenses spaced at the pitch of a 96-well plate to produce high-resolution movies of migrating cells. With the system, we enable HT migration analysis of immune cells in 96- and 384-well plates with very energy-efficient performance. We demonstrate that the system can measure multiple clinical samples simultaneously. Furthermore, we screen 1000 compounds and identify 17 modifiers of migration in human neutrophils in just 4 days, a task that requires 60-times longer with a conventional video microscope. ComplexEye thus opens the field of phenotypic HT migration screens and enables routine migration analysis for the clinical setting. Video microscopy is key in studying cell migration, but accomplishing this in a high-throughput manner is still challenging. Here, the authors present an array microscope that can track the movements of thousands of individual cells simultaneously, and that can be used for drug screening studies.
Keywords:
NEUTROPHIL DYSFUNCTION
ABNORMALITIES
INFLAMMATION
DYNAMICS
MOTILITY
REVEALS
INJURY
MODEL
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Journal

Nature Communications cover
Nature Communications
IF:
15.7
Papers:
9.2W
Citations:
91.2W

Organization

L
leibniz institut fur analytische wissenschaften (isas)
Scholars:
329
Papers: 251
Citations: 0
D
dortmund university of technology
Scholars:
9.4K
Papers: 9.1K
Citations: 15
U
University of Duisburg Essen
Scholars:
2.2W
Papers: 1.7W
Citations: 22
R
ruhr university bochum
Scholars:
2.3W
Papers: 1.9W
Citations: 14
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