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Simvastatin treatment promotes proliferation of human dental pulp stem cells via modulating PI3K/AKT/miR‐9/KLF5 signalling pathway

Simvastatin serves as an effective therapeutic potential in the treatment of dental disease via alternating proliferation of dental pulp stem cells. First, western‐blot and real‐time quantitative PCR were used to detect the effect of simvastatin or LY294002 on the expression levels of AKT, miR‐9 and...

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Detalles Bibliográficos
Autores principales: Wang, Jing‐hui, He, Dang‐en
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8642689/
https://www.ncbi.nlm.nih.gov/pubmed/34799978
http://dx.doi.org/10.1111/jcmm.16973
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author Wang, Jing‐hui
He, Dang‐en
author_facet Wang, Jing‐hui
He, Dang‐en
author_sort Wang, Jing‐hui
collection PubMed
description Simvastatin serves as an effective therapeutic potential in the treatment of dental disease via alternating proliferation of dental pulp stem cells. First, western‐blot and real‐time quantitative PCR were used to detect the effect of simvastatin or LY294002 on the expression levels of AKT, miR‐9 and KLF5, or determine the effect of miR‐9. Simvastatin, KLF5 and AKT significantly enhanced the proliferation of pulp stem cells, whilst this effect induced by simvastatin was suppressed by LY294002, AKT siRNA, KLF5 siRNA and miR‐9, and simvastatin dose‐dependently upregulated the expression of PI3K. Furthermore, simvastatin upregulated PI3K and p‐AKT expression in a concentration‐dependent manner. LY294002 abrogated the upregulation of p‐AKT expression levels induced by simvastatin, and LY294002 induced the miR‐9 expression and simvastatin dose‐dependently inhibited the expression of miR‐9, by contrast, LY294002 reduced the KLF5 expression and simvastatin dose‐dependently promoted the expression of KLF5. And using computational analysis, KLF5 was found to be a candidate target gene of miR‐9, and which was further verified using luciferase assay. Finally, the level of KLF5 in cells was much lower following the transfection with miR‐9 and KLF5 siRNA, and the level of AKT mRNA in cells was significantly inhibited after transfection with AKT siRNA than control. These findings suggested simvastatin could promote the proliferation of pulp stem cells, possibly by suppressing the expression of miR‐9 via activating the PI3K/AKT signalling pathway, and the downregulation of miR‐9 upregulated the expression of its target gene, KLF5, which is directly responsible for the enhanced proliferation of pulp stem cells.
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spelling pubmed-86426892021-12-15 Simvastatin treatment promotes proliferation of human dental pulp stem cells via modulating PI3K/AKT/miR‐9/KLF5 signalling pathway Wang, Jing‐hui He, Dang‐en J Cell Mol Med Original Articles Simvastatin serves as an effective therapeutic potential in the treatment of dental disease via alternating proliferation of dental pulp stem cells. First, western‐blot and real‐time quantitative PCR were used to detect the effect of simvastatin or LY294002 on the expression levels of AKT, miR‐9 and KLF5, or determine the effect of miR‐9. Simvastatin, KLF5 and AKT significantly enhanced the proliferation of pulp stem cells, whilst this effect induced by simvastatin was suppressed by LY294002, AKT siRNA, KLF5 siRNA and miR‐9, and simvastatin dose‐dependently upregulated the expression of PI3K. Furthermore, simvastatin upregulated PI3K and p‐AKT expression in a concentration‐dependent manner. LY294002 abrogated the upregulation of p‐AKT expression levels induced by simvastatin, and LY294002 induced the miR‐9 expression and simvastatin dose‐dependently inhibited the expression of miR‐9, by contrast, LY294002 reduced the KLF5 expression and simvastatin dose‐dependently promoted the expression of KLF5. And using computational analysis, KLF5 was found to be a candidate target gene of miR‐9, and which was further verified using luciferase assay. Finally, the level of KLF5 in cells was much lower following the transfection with miR‐9 and KLF5 siRNA, and the level of AKT mRNA in cells was significantly inhibited after transfection with AKT siRNA than control. These findings suggested simvastatin could promote the proliferation of pulp stem cells, possibly by suppressing the expression of miR‐9 via activating the PI3K/AKT signalling pathway, and the downregulation of miR‐9 upregulated the expression of its target gene, KLF5, which is directly responsible for the enhanced proliferation of pulp stem cells. John Wiley and Sons Inc. 2021-11-19 2021-12 /pmc/articles/PMC8642689/ /pubmed/34799978 http://dx.doi.org/10.1111/jcmm.16973 Text en © 2021 The Authors. Journal of Cellular and Molecular Medicine published by Foundation for Cellular and Molecular Medicine and John Wiley & Sons Ltd. https://creativecommons.org/licenses/by/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Articles
Wang, Jing‐hui
He, Dang‐en
Simvastatin treatment promotes proliferation of human dental pulp stem cells via modulating PI3K/AKT/miR‐9/KLF5 signalling pathway
title Simvastatin treatment promotes proliferation of human dental pulp stem cells via modulating PI3K/AKT/miR‐9/KLF5 signalling pathway
title_full Simvastatin treatment promotes proliferation of human dental pulp stem cells via modulating PI3K/AKT/miR‐9/KLF5 signalling pathway
title_fullStr Simvastatin treatment promotes proliferation of human dental pulp stem cells via modulating PI3K/AKT/miR‐9/KLF5 signalling pathway
title_full_unstemmed Simvastatin treatment promotes proliferation of human dental pulp stem cells via modulating PI3K/AKT/miR‐9/KLF5 signalling pathway
title_short Simvastatin treatment promotes proliferation of human dental pulp stem cells via modulating PI3K/AKT/miR‐9/KLF5 signalling pathway
title_sort simvastatin treatment promotes proliferation of human dental pulp stem cells via modulating pi3k/akt/mir‐9/klf5 signalling pathway
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8642689/
https://www.ncbi.nlm.nih.gov/pubmed/34799978
http://dx.doi.org/10.1111/jcmm.16973
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