The promotion function of Berberine for osteogenic differentiation of human periodontal ligament stem cells via ERK-FOS pathway mediated by EGFR

Abstract Coptidis Rhizoma binds to the membrane receptors on hPDLSC/CMC, and the active ingredient Berberine (BER) that can be extracted from it may promote the proliferation and osteogenesis of periodontal ligament stem cells (hPDLSC). The membrane receptor that binds with BER on the cell surface o...

Descripción completa

Guardado en:
Detalles Bibliográficos
Autores principales: Jin Liu, Xiaodan Zhao, Dandan Pei, Guo Sun, Ye Li, Chunhui Zhu, Cui Qiang, Junyi Sun, Jianfeng Shi, Yan Dong, Jianzhong Gou, Sicen Wang, Ang Li
Formato: article
Lenguaje:EN
Publicado: Nature Portfolio 2018
Materias:
R
Q
Acceso en línea:https://doaj.org/article/817ba142af204852a14af24899beff10
Etiquetas: Agregar Etiqueta
Sin Etiquetas, Sea el primero en etiquetar este registro!
id oai:doaj.org-article:817ba142af204852a14af24899beff10
record_format dspace
spelling oai:doaj.org-article:817ba142af204852a14af24899beff102021-12-02T15:09:04ZThe promotion function of Berberine for osteogenic differentiation of human periodontal ligament stem cells via ERK-FOS pathway mediated by EGFR10.1038/s41598-018-21116-32045-2322https://doaj.org/article/817ba142af204852a14af24899beff102018-02-01T00:00:00Zhttps://doi.org/10.1038/s41598-018-21116-3https://doaj.org/toc/2045-2322Abstract Coptidis Rhizoma binds to the membrane receptors on hPDLSC/CMC, and the active ingredient Berberine (BER) that can be extracted from it may promote the proliferation and osteogenesis of periodontal ligament stem cells (hPDLSC). The membrane receptor that binds with BER on the cell surface of hPDLSC, the mechanism of direct interaction between BER and hPDLSC, and the related signal pathway are not yet clear. In this research, EGFR was screened as the affinity membrane receptor between BER and hPDLSC, through retention on CMC, competition with BER and by using a molecular docking simulation score. At the same time, the MAPK PCR Array was selected to screen the target genes that changed when hPDLSC was simulated by BER. In conclusion, BER may bind to EGFR on the cell membrane of hPDLSC so the intracellular ERK signalling pathways activate, and nuclear-related genes of FOS change, resulting in the effect of osteogenesis on PDLSC.Jin LiuXiaodan ZhaoDandan PeiGuo SunYe LiChunhui ZhuCui QiangJunyi SunJianfeng ShiYan DongJianzhong GouSicen WangAng LiNature PortfolioarticleMedicineRScienceQENScientific Reports, Vol 8, Iss 1, Pp 1-10 (2018)
institution DOAJ
collection DOAJ
language EN
topic Medicine
R
Science
Q
spellingShingle Medicine
R
Science
Q
Jin Liu
Xiaodan Zhao
Dandan Pei
Guo Sun
Ye Li
Chunhui Zhu
Cui Qiang
Junyi Sun
Jianfeng Shi
Yan Dong
Jianzhong Gou
Sicen Wang
Ang Li
The promotion function of Berberine for osteogenic differentiation of human periodontal ligament stem cells via ERK-FOS pathway mediated by EGFR
description Abstract Coptidis Rhizoma binds to the membrane receptors on hPDLSC/CMC, and the active ingredient Berberine (BER) that can be extracted from it may promote the proliferation and osteogenesis of periodontal ligament stem cells (hPDLSC). The membrane receptor that binds with BER on the cell surface of hPDLSC, the mechanism of direct interaction between BER and hPDLSC, and the related signal pathway are not yet clear. In this research, EGFR was screened as the affinity membrane receptor between BER and hPDLSC, through retention on CMC, competition with BER and by using a molecular docking simulation score. At the same time, the MAPK PCR Array was selected to screen the target genes that changed when hPDLSC was simulated by BER. In conclusion, BER may bind to EGFR on the cell membrane of hPDLSC so the intracellular ERK signalling pathways activate, and nuclear-related genes of FOS change, resulting in the effect of osteogenesis on PDLSC.
format article
author Jin Liu
Xiaodan Zhao
Dandan Pei
Guo Sun
Ye Li
Chunhui Zhu
Cui Qiang
Junyi Sun
Jianfeng Shi
Yan Dong
Jianzhong Gou
Sicen Wang
Ang Li
author_facet Jin Liu
Xiaodan Zhao
Dandan Pei
Guo Sun
Ye Li
Chunhui Zhu
Cui Qiang
Junyi Sun
Jianfeng Shi
Yan Dong
Jianzhong Gou
Sicen Wang
Ang Li
author_sort Jin Liu
title The promotion function of Berberine for osteogenic differentiation of human periodontal ligament stem cells via ERK-FOS pathway mediated by EGFR
title_short The promotion function of Berberine for osteogenic differentiation of human periodontal ligament stem cells via ERK-FOS pathway mediated by EGFR
title_full The promotion function of Berberine for osteogenic differentiation of human periodontal ligament stem cells via ERK-FOS pathway mediated by EGFR
title_fullStr The promotion function of Berberine for osteogenic differentiation of human periodontal ligament stem cells via ERK-FOS pathway mediated by EGFR
title_full_unstemmed The promotion function of Berberine for osteogenic differentiation of human periodontal ligament stem cells via ERK-FOS pathway mediated by EGFR
title_sort promotion function of berberine for osteogenic differentiation of human periodontal ligament stem cells via erk-fos pathway mediated by egfr
publisher Nature Portfolio
publishDate 2018
url https://doaj.org/article/817ba142af204852a14af24899beff10
work_keys_str_mv AT jinliu thepromotionfunctionofberberineforosteogenicdifferentiationofhumanperiodontalligamentstemcellsviaerkfospathwaymediatedbyegfr
AT xiaodanzhao thepromotionfunctionofberberineforosteogenicdifferentiationofhumanperiodontalligamentstemcellsviaerkfospathwaymediatedbyegfr
AT dandanpei thepromotionfunctionofberberineforosteogenicdifferentiationofhumanperiodontalligamentstemcellsviaerkfospathwaymediatedbyegfr
AT guosun thepromotionfunctionofberberineforosteogenicdifferentiationofhumanperiodontalligamentstemcellsviaerkfospathwaymediatedbyegfr
AT yeli thepromotionfunctionofberberineforosteogenicdifferentiationofhumanperiodontalligamentstemcellsviaerkfospathwaymediatedbyegfr
AT chunhuizhu thepromotionfunctionofberberineforosteogenicdifferentiationofhumanperiodontalligamentstemcellsviaerkfospathwaymediatedbyegfr
AT cuiqiang thepromotionfunctionofberberineforosteogenicdifferentiationofhumanperiodontalligamentstemcellsviaerkfospathwaymediatedbyegfr
AT junyisun thepromotionfunctionofberberineforosteogenicdifferentiationofhumanperiodontalligamentstemcellsviaerkfospathwaymediatedbyegfr
AT jianfengshi thepromotionfunctionofberberineforosteogenicdifferentiationofhumanperiodontalligamentstemcellsviaerkfospathwaymediatedbyegfr
AT yandong thepromotionfunctionofberberineforosteogenicdifferentiationofhumanperiodontalligamentstemcellsviaerkfospathwaymediatedbyegfr
AT jianzhonggou thepromotionfunctionofberberineforosteogenicdifferentiationofhumanperiodontalligamentstemcellsviaerkfospathwaymediatedbyegfr
AT sicenwang thepromotionfunctionofberberineforosteogenicdifferentiationofhumanperiodontalligamentstemcellsviaerkfospathwaymediatedbyegfr
AT angli thepromotionfunctionofberberineforosteogenicdifferentiationofhumanperiodontalligamentstemcellsviaerkfospathwaymediatedbyegfr
AT jinliu promotionfunctionofberberineforosteogenicdifferentiationofhumanperiodontalligamentstemcellsviaerkfospathwaymediatedbyegfr
AT xiaodanzhao promotionfunctionofberberineforosteogenicdifferentiationofhumanperiodontalligamentstemcellsviaerkfospathwaymediatedbyegfr
AT dandanpei promotionfunctionofberberineforosteogenicdifferentiationofhumanperiodontalligamentstemcellsviaerkfospathwaymediatedbyegfr
AT guosun promotionfunctionofberberineforosteogenicdifferentiationofhumanperiodontalligamentstemcellsviaerkfospathwaymediatedbyegfr
AT yeli promotionfunctionofberberineforosteogenicdifferentiationofhumanperiodontalligamentstemcellsviaerkfospathwaymediatedbyegfr
AT chunhuizhu promotionfunctionofberberineforosteogenicdifferentiationofhumanperiodontalligamentstemcellsviaerkfospathwaymediatedbyegfr
AT cuiqiang promotionfunctionofberberineforosteogenicdifferentiationofhumanperiodontalligamentstemcellsviaerkfospathwaymediatedbyegfr
AT junyisun promotionfunctionofberberineforosteogenicdifferentiationofhumanperiodontalligamentstemcellsviaerkfospathwaymediatedbyegfr
AT jianfengshi promotionfunctionofberberineforosteogenicdifferentiationofhumanperiodontalligamentstemcellsviaerkfospathwaymediatedbyegfr
AT yandong promotionfunctionofberberineforosteogenicdifferentiationofhumanperiodontalligamentstemcellsviaerkfospathwaymediatedbyegfr
AT jianzhonggou promotionfunctionofberberineforosteogenicdifferentiationofhumanperiodontalligamentstemcellsviaerkfospathwaymediatedbyegfr
AT sicenwang promotionfunctionofberberineforosteogenicdifferentiationofhumanperiodontalligamentstemcellsviaerkfospathwaymediatedbyegfr
AT angli promotionfunctionofberberineforosteogenicdifferentiationofhumanperiodontalligamentstemcellsviaerkfospathwaymediatedbyegfr
_version_ 1718387950655373312