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  5. Upregulation of BMSCs Osteogenesis by Positively-Charged Tertiary Amines on Polymeric Implants via Charge/iNOS Signaling Pathway

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Article
en
2015

Upregulation of BMSCs Osteogenesis by Positively-Charged Tertiary Amines on Polymeric Implants via Charge/iNOS Signaling Pathway

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en
2015
Vol 5 (1)
Vol. 5
DOI: 10.1038/srep09369

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Paul Kim Ho Chu
Paul Kim Ho Chu

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Wei Zhang
Na Liu
Haigang Shi
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Abstract

Abstract Positively-charged surfaces on implants have a similar potential to upregulate osteogenesis of bone marrow-derived mesenchymal stem cells (BMSCs) as electromagnetic therapy approved for bone regeneration. Generally, their osteogenesis functions are generally considered to stem from the charge-induced adhesion of extracellular matrix (ECM) proteins without exploring the underlying surface charge/cell signaling molecule pathways. Herein, a positively-charged surface with controllable tertiary amines is produced on a polymer implant by plasma surface modification. In addition to inhibiting the TNF-α expression, the positively-charged surface with tertiary amines exhibits excellent cytocompatibility as well as remarkably upregulated osteogenesis-related gene/protein expressions and calcification of the contacted BMSCs. Stimulated by the charged surface, these BMSCs display high iNOS expressions among the three NOS isoforms. Meanwhile, downregulation of the iNOS by L-Can or siRNA inhibit osteogenic differentiation in the BMSCs. These findings suggest that a positively-charged surface with tertiary amines induces osteogenesis of BMSCs via the surface charge/iNOS signaling pathway in addition to elevated ECM protein adhesion. Therefore, creating a positively-charged surface with tertiary amines is a promising approach to promote osseointegration with bone tissues.

How to cite this publication

Wei Zhang, Na Liu, Haigang Shi, Jun Liu, Lianxin Shi, Bo Zhang, Huaiyu Wang, Junhui Ji, Paul Kim Ho Chu (2015). Upregulation of BMSCs Osteogenesis by Positively-Charged Tertiary Amines on Polymeric Implants via Charge/iNOS Signaling Pathway. , 5(1), DOI: https://doi.org/10.1038/srep09369.

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Publication Details

Type

Article

Year

2015

Authors

9

Datasets

0

Total Files

0

Language

en

DOI

https://doi.org/10.1038/srep09369

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