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MTA promotes chemotaxis and chemokinesis of immune cells through distinct calcium-sensing receptor signaling pathways

Cited 13 time in Web of Science Cited 14 time in Scopus
Authors

Chang, Fengjiao; Kim, Jin Man; Choi, Youngnim; Park, Kyungpyo

Issue Date
2018-01
Publisher
Pergamon Press Ltd.
Citation
Biomaterials, Vol.150, pp.14-24
Abstract
Mineral trioxide aggregate (MTA) has been introduced as a choice material for regenerative dentistry. To date, the diverse biological activities of MTA, including its anti-inflammatory effects, have been extensively discussed. However, there is limited insight into the link between MTA and immune cell migration. In this study, we report the role of MTA in enhancing both chemotactic and chemokinetic immune cell migration through distinct signaling pathways. By using versatile live imaging techniques, we demonstrated that MTA-mediated CaSR activation induced diverse downstream pathways to govern cell migratory capacity. In this context, Cdc42 generates cytoskeleton-driven cellular protrusions to steer directional cell migration (chemotaxis) whereas Cg(2+)-calmodulin dependent myosin light chain kinase induces cell contractility that plays an important role in speeding up the average migration speed (chemokinesis). Our findings illuminate an unrecognized role for MTA and the related CaSR signaling network in immune cell migration, providing evidence that can drive development of novel approaches to immunological therapy. (C) 2017 Elsevier Ltd. All rights reserved.
ISSN
0142-9612
Language
English
URI
https://hdl.handle.net/10371/147996
DOI
https://doi.org/10.1016/j.biomaterials.2017.10.009
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