Cargando…

Bi-Functionalization of a Calcium Phosphate-Coated Titanium Surface with Slow-Release Simvastatin and Metronidazole to Provide Antibacterial Activities and Pro-Osteodifferentiation Capabilities

Coating the surface of titanium implants or other bone graft substitute materials with calcium phosphate (Ca-P) crystals is an effective way to enhance the osteoconduction of the implants. Ca-P coating alone cannot confer pro-osteodifferentiation and antibacterial capabilities on implants; however,...

Descripción completa

Detalles Bibliográficos
Autores principales: Liu, Yunsong, Zhang, Xiao, Liu, Yang, Jin, Xiaoxiao, Fan, Cong, Ye, Hongqiang, Ou, Meng’en, Lv, Longwei, Wu, Gang, Zhou, Yongsheng
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4028224/
https://www.ncbi.nlm.nih.gov/pubmed/24844416
http://dx.doi.org/10.1371/journal.pone.0097741
_version_ 1782317047445716992
author Liu, Yunsong
Zhang, Xiao
Liu, Yang
Jin, Xiaoxiao
Fan, Cong
Ye, Hongqiang
Ou, Meng’en
Lv, Longwei
Wu, Gang
Zhou, Yongsheng
author_facet Liu, Yunsong
Zhang, Xiao
Liu, Yang
Jin, Xiaoxiao
Fan, Cong
Ye, Hongqiang
Ou, Meng’en
Lv, Longwei
Wu, Gang
Zhou, Yongsheng
author_sort Liu, Yunsong
collection PubMed
description Coating the surface of titanium implants or other bone graft substitute materials with calcium phosphate (Ca-P) crystals is an effective way to enhance the osteoconduction of the implants. Ca-P coating alone cannot confer pro-osteodifferentiation and antibacterial capabilities on implants; however, it can serve as a carrier for biological agents which could improve the performance of implants and bone substitutes. Here, we constructed a novel, bi-functional Ca-P coating with combined pro-osteodifferentiation and antibacterial capabilities. Different concentrations of metronidazole (MNZ) and simvastatin (SIM) were integrated into biomimetic Ca-P coatings on the surface of titanium disks. The biological effects of this bi-functional biomimetic coating on human bone marrow mesenchymal stem cells (hBMMSCs), human adipose derived stromal cells (hASCs), and Porphyromonas gingivalis were assessed in vitro. We observed that Ca-P coatings loaded with both SIM and MNZ display favorable release kinetics without affecting cell proliferation or attachment. In the inhibition zone test, we found that the bi-functional coating showed lasting antibacterial effects when incubated with Porphyromonas gingivalis for 2 and 4 days. Moreover, the osteodifferentiation of hBMMSCs and hASCs were increased when cultured on this bi-functional coating for 7 and 14 days. Both drugs were loaded onto the Ca-P coating at specific concentrations (10(−5) M SIM; 10(−2) M MNZ) to achieve optimal release kinetics. Considering the safety, stability and low cost of SIM and MNZ, this novel bi-functional Ca-P coating technique represents a promising method to improve the performance of metal implants or other bone substitute materials, and can theoretically be easily translated to clinical applications.
format Online
Article
Text
id pubmed-4028224
institution National Center for Biotechnology Information
language English
publishDate 2014
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-40282242014-05-21 Bi-Functionalization of a Calcium Phosphate-Coated Titanium Surface with Slow-Release Simvastatin and Metronidazole to Provide Antibacterial Activities and Pro-Osteodifferentiation Capabilities Liu, Yunsong Zhang, Xiao Liu, Yang Jin, Xiaoxiao Fan, Cong Ye, Hongqiang Ou, Meng’en Lv, Longwei Wu, Gang Zhou, Yongsheng PLoS One Research Article Coating the surface of titanium implants or other bone graft substitute materials with calcium phosphate (Ca-P) crystals is an effective way to enhance the osteoconduction of the implants. Ca-P coating alone cannot confer pro-osteodifferentiation and antibacterial capabilities on implants; however, it can serve as a carrier for biological agents which could improve the performance of implants and bone substitutes. Here, we constructed a novel, bi-functional Ca-P coating with combined pro-osteodifferentiation and antibacterial capabilities. Different concentrations of metronidazole (MNZ) and simvastatin (SIM) were integrated into biomimetic Ca-P coatings on the surface of titanium disks. The biological effects of this bi-functional biomimetic coating on human bone marrow mesenchymal stem cells (hBMMSCs), human adipose derived stromal cells (hASCs), and Porphyromonas gingivalis were assessed in vitro. We observed that Ca-P coatings loaded with both SIM and MNZ display favorable release kinetics without affecting cell proliferation or attachment. In the inhibition zone test, we found that the bi-functional coating showed lasting antibacterial effects when incubated with Porphyromonas gingivalis for 2 and 4 days. Moreover, the osteodifferentiation of hBMMSCs and hASCs were increased when cultured on this bi-functional coating for 7 and 14 days. Both drugs were loaded onto the Ca-P coating at specific concentrations (10(−5) M SIM; 10(−2) M MNZ) to achieve optimal release kinetics. Considering the safety, stability and low cost of SIM and MNZ, this novel bi-functional Ca-P coating technique represents a promising method to improve the performance of metal implants or other bone substitute materials, and can theoretically be easily translated to clinical applications. Public Library of Science 2014-05-20 /pmc/articles/PMC4028224/ /pubmed/24844416 http://dx.doi.org/10.1371/journal.pone.0097741 Text en © 2014 Liu et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Liu, Yunsong
Zhang, Xiao
Liu, Yang
Jin, Xiaoxiao
Fan, Cong
Ye, Hongqiang
Ou, Meng’en
Lv, Longwei
Wu, Gang
Zhou, Yongsheng
Bi-Functionalization of a Calcium Phosphate-Coated Titanium Surface with Slow-Release Simvastatin and Metronidazole to Provide Antibacterial Activities and Pro-Osteodifferentiation Capabilities
title Bi-Functionalization of a Calcium Phosphate-Coated Titanium Surface with Slow-Release Simvastatin and Metronidazole to Provide Antibacterial Activities and Pro-Osteodifferentiation Capabilities
title_full Bi-Functionalization of a Calcium Phosphate-Coated Titanium Surface with Slow-Release Simvastatin and Metronidazole to Provide Antibacterial Activities and Pro-Osteodifferentiation Capabilities
title_fullStr Bi-Functionalization of a Calcium Phosphate-Coated Titanium Surface with Slow-Release Simvastatin and Metronidazole to Provide Antibacterial Activities and Pro-Osteodifferentiation Capabilities
title_full_unstemmed Bi-Functionalization of a Calcium Phosphate-Coated Titanium Surface with Slow-Release Simvastatin and Metronidazole to Provide Antibacterial Activities and Pro-Osteodifferentiation Capabilities
title_short Bi-Functionalization of a Calcium Phosphate-Coated Titanium Surface with Slow-Release Simvastatin and Metronidazole to Provide Antibacterial Activities and Pro-Osteodifferentiation Capabilities
title_sort bi-functionalization of a calcium phosphate-coated titanium surface with slow-release simvastatin and metronidazole to provide antibacterial activities and pro-osteodifferentiation capabilities
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4028224/
https://www.ncbi.nlm.nih.gov/pubmed/24844416
http://dx.doi.org/10.1371/journal.pone.0097741
work_keys_str_mv AT liuyunsong bifunctionalizationofacalciumphosphatecoatedtitaniumsurfacewithslowreleasesimvastatinandmetronidazoletoprovideantibacterialactivitiesandproosteodifferentiationcapabilities
AT zhangxiao bifunctionalizationofacalciumphosphatecoatedtitaniumsurfacewithslowreleasesimvastatinandmetronidazoletoprovideantibacterialactivitiesandproosteodifferentiationcapabilities
AT liuyang bifunctionalizationofacalciumphosphatecoatedtitaniumsurfacewithslowreleasesimvastatinandmetronidazoletoprovideantibacterialactivitiesandproosteodifferentiationcapabilities
AT jinxiaoxiao bifunctionalizationofacalciumphosphatecoatedtitaniumsurfacewithslowreleasesimvastatinandmetronidazoletoprovideantibacterialactivitiesandproosteodifferentiationcapabilities
AT fancong bifunctionalizationofacalciumphosphatecoatedtitaniumsurfacewithslowreleasesimvastatinandmetronidazoletoprovideantibacterialactivitiesandproosteodifferentiationcapabilities
AT yehongqiang bifunctionalizationofacalciumphosphatecoatedtitaniumsurfacewithslowreleasesimvastatinandmetronidazoletoprovideantibacterialactivitiesandproosteodifferentiationcapabilities
AT oumengen bifunctionalizationofacalciumphosphatecoatedtitaniumsurfacewithslowreleasesimvastatinandmetronidazoletoprovideantibacterialactivitiesandproosteodifferentiationcapabilities
AT lvlongwei bifunctionalizationofacalciumphosphatecoatedtitaniumsurfacewithslowreleasesimvastatinandmetronidazoletoprovideantibacterialactivitiesandproosteodifferentiationcapabilities
AT wugang bifunctionalizationofacalciumphosphatecoatedtitaniumsurfacewithslowreleasesimvastatinandmetronidazoletoprovideantibacterialactivitiesandproosteodifferentiationcapabilities
AT zhouyongsheng bifunctionalizationofacalciumphosphatecoatedtitaniumsurfacewithslowreleasesimvastatinandmetronidazoletoprovideantibacterialactivitiesandproosteodifferentiationcapabilities