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TRPC6 in simulated microgravity of intervertebral disc cells

  • Purpose Prolonged bed rest and microgravity in space cause intervertebral disc (IVD) degeneration. However, the underlying molecular mechanisms are not completely understood. Transient receptor potential canonical (TRPC) channels are implicated in mechanosensing of several tissues, but are poorly explored in IVDs. Methods Primary human IVD cells from surgical biopsies composed of both annulus fibrosus and nucleus pulposus (passage 1-2) were exposed to simulated microgravity and to the TRPC channel inhibitor SKF-96365 (SKF) for up to 5days. Proliferative capacity, cell cycle distribution, senescence and TRPC channel expression were analyzed. Results Both simulated microgravity and TRPC channel antagonism reduced the proliferative capacity of IVD cells and induced senescence. While significant changes in cell cycle distributions (reduction in G1 and accumulation in G2/M) were observed upon SKF treatment, the effect was small upon 3days of simulated microgravity. Finally, downregulation of TRPC6 was shown under simulated microgravity.Purpose Prolonged bed rest and microgravity in space cause intervertebral disc (IVD) degeneration. However, the underlying molecular mechanisms are not completely understood. Transient receptor potential canonical (TRPC) channels are implicated in mechanosensing of several tissues, but are poorly explored in IVDs. Methods Primary human IVD cells from surgical biopsies composed of both annulus fibrosus and nucleus pulposus (passage 1-2) were exposed to simulated microgravity and to the TRPC channel inhibitor SKF-96365 (SKF) for up to 5days. Proliferative capacity, cell cycle distribution, senescence and TRPC channel expression were analyzed. Results Both simulated microgravity and TRPC channel antagonism reduced the proliferative capacity of IVD cells and induced senescence. While significant changes in cell cycle distributions (reduction in G1 and accumulation in G2/M) were observed upon SKF treatment, the effect was small upon 3days of simulated microgravity. Finally, downregulation of TRPC6 was shown under simulated microgravity. Conclusions Simulated microgravity and TRPC channel inhibition both led to reduced proliferation and increased senescence. Furthermore, simulated microgravity reduced TRPC6 expression. IVD cell senescence and mechanotransduction may hence potentially be regulated by TRPC6 expression. This study thus reveals promising targets for future studies.zeige mehrzeige weniger

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Verfasserangaben:Alfredo Franco-ObregonORCiD, Elena Cambria, Helen Greutert, Timon Wernas, Wolfgang HitzlORCiD, Marcel Egli, Miho Sekiguchi, Norbert Boos, Oliver Hausmann, Stephen J. FergusonORCiD, Hiroshi Kobayashi, Karin Würtz-KozakORCiDGND
DOI:https://doi.org/10.1007/s00586-018-5688-8
ISSN:0940-6719
ISSN:1432-0932
Pubmed ID:https://pubmed.ncbi.nlm.nih.gov/29968164
Titel des übergeordneten Werks (Englisch):European Spine Journal
Verlag:Springer
Verlagsort:New York
Publikationstyp:Wissenschaftlicher Artikel
Sprache:Englisch
Datum der Erstveröffentlichung:02.07.2018
Erscheinungsjahr:2018
Datum der Freischaltung:20.09.2021
Freies Schlagwort / Tag:Gene expression; Intervertebral disc; Mechanotransduction; Senescence; Simulated microgravity; TRP channels
Band:27
Ausgabe:10
Seitenanzahl:10
Erste Seite:2621
Letzte Seite:2630
Fördernde Institution:Swiss National Science FoundationSwiss National Science Foundation (SNSF) [SNF PP00P2_163678/1]; Spine Society of Europe [Eurospine 2016_4]
Organisationseinheiten:Mathematisch-Naturwissenschaftliche Fakultät / Institut für Biochemie und Biologie
DDC-Klassifikation:5 Naturwissenschaften und Mathematik / 57 Biowissenschaften; Biologie / 570 Biowissenschaften; Biologie
Peer Review:Referiert
Publikationsweg:Open Access / Hybrid Open-Access
Lizenz (Deutsch):License LogoCC-BY - Namensnennung 4.0 International
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