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Retrograde Analysis of Calcium Signaling by CaMPARI2 Shows Cytosolic Calcium in Chondrocytes Is Unaffected by Parabolic Flights

Authors :
Böhmer, Andreas Hammer
Geraldine Cerretti
Dario A. Ricciardi
David Schiffmann
Simon Maranda
Raphael Kummer
Christoph Zumbühl
Karin F. Rattenbacher-Kiser
Silvan von Arx
Sebastian Ammann
Frederic Strobl
Rayene Berkane
Alexandra Stolz
Ernst H. K. Stelzer
Marcel Egli
Enrico Schleiff
Simon L. Wuest
Maik
Source :
Biomedicines; Volume 10; Issue 1; Pages: 138
Publication Year :
2022
Publisher :
Multidisciplinary Digital Publishing Institute, 2022.

Abstract

Calcium (Ca2+) elevation is an essential secondary messenger in many cellular processes, including disease progression and adaptation to external stimuli, e.g., gravitational load. Therefore, mapping and quantifying Ca2+ signaling with a high spatiotemporal resolution is a key challenge. However, particularly on microgravity platforms, experiment time is limited, allowing only a small number of replicates. Furthermore, experiment hardware is exposed to changes in gravity levels, causing experimental artifacts unless appropriately controlled. We introduce a new experimental setup based on the fluorescent Ca2+ reporter CaMPARI2, onboard LED arrays, and subsequent microscopic analysis on the ground. This setup allows for higher throughput and accuracy due to its retrograde nature. The excellent performance of CaMPARI2 was demonstrated with human chondrocytes during the 75th ESA parabolic flight campaign. CaMPARI2 revealed a strong Ca2+ response triggered by histamine but was not affected by the alternating gravitational load of a parabolic flight.

Details

Language :
English
ISSN :
22279059
Database :
OpenAIRE
Journal :
Biomedicines; Volume 10; Issue 1; Pages: 138
Accession number :
edsair.multidiscipl..70604276e5570e9f2c205a1480bc6723
Full Text :
https://doi.org/10.3390/biomedicines10010138