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A study of Drynaria fortunei in modulation of BMP–2 signalling by bone tissue engineering

BACKGROUND/AIM: Drynaria fortunei (Gusuibu; GSB) is a popular traditional Chinese medicine used for bone repair. An increasing number of studies have reported that GSB induces osteogenic differentiation in bone marrow mesenchymal stem cells (BMSCs). These results provide insight into the application...

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Autores principales: DONG, Guo-Chung, MA, Tzn-Yuan, LI, Chi-Han, CHI, Chih-Ying, SU, Chao-Ming, HUANG, Chih-Ling, WANG, Yan-Hsiung, LEE, Tzer-Ming
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Scientific and Technological Research Council of Turkey 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7491309/
https://www.ncbi.nlm.nih.gov/pubmed/32252500
http://dx.doi.org/10.3906/sag-2001-148
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author DONG, Guo-Chung
MA, Tzn-Yuan
LI, Chi-Han
CHI, Chih-Ying
SU, Chao-Ming
HUANG, Chih-Ling
WANG, Yan-Hsiung
LEE, Tzer-Ming
author_facet DONG, Guo-Chung
MA, Tzn-Yuan
LI, Chi-Han
CHI, Chih-Ying
SU, Chao-Ming
HUANG, Chih-Ling
WANG, Yan-Hsiung
LEE, Tzer-Ming
author_sort DONG, Guo-Chung
collection PubMed
description BACKGROUND/AIM: Drynaria fortunei (Gusuibu; GSB) is a popular traditional Chinese medicine used for bone repair. An increasing number of studies have reported that GSB induces osteogenic differentiation in bone marrow mesenchymal stem cells (BMSCs). These results provide insight into the application of GSB for bone tissue engineering techniques used to repair large bone defects. However, few studies have described the molecular mechanisms of GSB. MATERIALS AND METHODS: In the present study, the effects of GSB and naringin, a marker compound, on the binding of BMP-2 to BMPR and BMP-2-derived signal transduction were investigated using surface plasmon resonance (SPR) and coculturing with BMPR-expressed cell line, C(2)C(12), respectively. Furthermore, naringin was also used to prepare naringin contained scaffolds for bone tissue engineering. The physical and chemical properties of these scaffolds were analysed using scanning electron microscopy (SEM) and highperformance liquid chromatography (HPLC). These scaffolds were cocultured with rabbit BMSCs in vitro and implanted into rabbit calvarial defects for bone repair assessment. RESULTS: The results showed that GSB and naringin affect the binding of BMP and BMPR in SPR experiments. GSB is a subtle BMP modulator that simultaneously inhibits the binding of BMP-2 to BMPR-1A and enhances its binding to BMPR-1B. In contrast, naringin inhibited BMP-2 binding to BMPR-1A. In vitro studies involving the phosphorylation of signals downstream of BMPR and Smad showed that GSB and naringin affected stem cell differentiation by inhibiting BMPR-1A signalling. When using GSB for bone tissue engineering, naringin exhibited a higher capacity for slow and gradual release from the scaffold, which promotes bone formation via osteoinduction. Moreover, control and naringin scaffolds were implanted into rabbit calvarial defects for 4 weeks, and naringin enhanced bone regeneration in vivo significantly. CONCLUSION: GSB and its marker compound (naringin) could inhibit the binding of BMP-2 and BMPR-1A to control cell differentiation by blocked BMPR-1A signalling and enhanced BMPR-1B signalling. GSB and naringin could be good natural BMP regulators for bone tissue engineering.
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spelling pubmed-74913092020-09-16 A study of Drynaria fortunei in modulation of BMP–2 signalling by bone tissue engineering DONG, Guo-Chung MA, Tzn-Yuan LI, Chi-Han CHI, Chih-Ying SU, Chao-Ming HUANG, Chih-Ling WANG, Yan-Hsiung LEE, Tzer-Ming Turk J Med Sci Article BACKGROUND/AIM: Drynaria fortunei (Gusuibu; GSB) is a popular traditional Chinese medicine used for bone repair. An increasing number of studies have reported that GSB induces osteogenic differentiation in bone marrow mesenchymal stem cells (BMSCs). These results provide insight into the application of GSB for bone tissue engineering techniques used to repair large bone defects. However, few studies have described the molecular mechanisms of GSB. MATERIALS AND METHODS: In the present study, the effects of GSB and naringin, a marker compound, on the binding of BMP-2 to BMPR and BMP-2-derived signal transduction were investigated using surface plasmon resonance (SPR) and coculturing with BMPR-expressed cell line, C(2)C(12), respectively. Furthermore, naringin was also used to prepare naringin contained scaffolds for bone tissue engineering. The physical and chemical properties of these scaffolds were analysed using scanning electron microscopy (SEM) and highperformance liquid chromatography (HPLC). These scaffolds were cocultured with rabbit BMSCs in vitro and implanted into rabbit calvarial defects for bone repair assessment. RESULTS: The results showed that GSB and naringin affect the binding of BMP and BMPR in SPR experiments. GSB is a subtle BMP modulator that simultaneously inhibits the binding of BMP-2 to BMPR-1A and enhances its binding to BMPR-1B. In contrast, naringin inhibited BMP-2 binding to BMPR-1A. In vitro studies involving the phosphorylation of signals downstream of BMPR and Smad showed that GSB and naringin affected stem cell differentiation by inhibiting BMPR-1A signalling. When using GSB for bone tissue engineering, naringin exhibited a higher capacity for slow and gradual release from the scaffold, which promotes bone formation via osteoinduction. Moreover, control and naringin scaffolds were implanted into rabbit calvarial defects for 4 weeks, and naringin enhanced bone regeneration in vivo significantly. CONCLUSION: GSB and its marker compound (naringin) could inhibit the binding of BMP-2 and BMPR-1A to control cell differentiation by blocked BMPR-1A signalling and enhanced BMPR-1B signalling. GSB and naringin could be good natural BMP regulators for bone tissue engineering. The Scientific and Technological Research Council of Turkey 2020-08-26 /pmc/articles/PMC7491309/ /pubmed/32252500 http://dx.doi.org/10.3906/sag-2001-148 Text en Copyright © 2020 The Author(s) This article is distributed under the terms of the Creative Commons Attribution License ( http://creativecommons.org/licenses/by/4.0/ ), which permits unrestricted use and redistribution provided that the original author and source are credited.
spellingShingle Article
DONG, Guo-Chung
MA, Tzn-Yuan
LI, Chi-Han
CHI, Chih-Ying
SU, Chao-Ming
HUANG, Chih-Ling
WANG, Yan-Hsiung
LEE, Tzer-Ming
A study of Drynaria fortunei in modulation of BMP–2 signalling by bone tissue engineering
title A study of Drynaria fortunei in modulation of BMP–2 signalling by bone tissue engineering
title_full A study of Drynaria fortunei in modulation of BMP–2 signalling by bone tissue engineering
title_fullStr A study of Drynaria fortunei in modulation of BMP–2 signalling by bone tissue engineering
title_full_unstemmed A study of Drynaria fortunei in modulation of BMP–2 signalling by bone tissue engineering
title_short A study of Drynaria fortunei in modulation of BMP–2 signalling by bone tissue engineering
title_sort study of drynaria fortunei in modulation of bmp–2 signalling by bone tissue engineering
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7491309/
https://www.ncbi.nlm.nih.gov/pubmed/32252500
http://dx.doi.org/10.3906/sag-2001-148
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