Cargando…

An antibacterial and injectable calcium phosphate scaffold delivering human periodontal ligament stem cells for bone tissue engineering

Osteomyelitis and post-operative infections are major problems in orthopedic, dental and craniofacial surgeries. It is highly desirable for a tissue engineering construct to kill bacteria, while simultaneously delivering stem cells and enhancing cell function and tissue regeneration. The objectives...

Descripción completa

Detalles Bibliográficos
Autores principales: Chen, Hong, Yang, Hui, Weir, Michael D., Schneider, Abraham, Ren, Ke, Homayounfar, Negar, Oates, Thomas W., Zhang, Ke, Liu, Jin, Hu, Tao, Xu, Hockin H. K.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9057516/
https://www.ncbi.nlm.nih.gov/pubmed/35520873
http://dx.doi.org/10.1039/d0ra06873j
_version_ 1784697914557202432
author Chen, Hong
Yang, Hui
Weir, Michael D.
Schneider, Abraham
Ren, Ke
Homayounfar, Negar
Oates, Thomas W.
Zhang, Ke
Liu, Jin
Hu, Tao
Xu, Hockin H. K.
author_facet Chen, Hong
Yang, Hui
Weir, Michael D.
Schneider, Abraham
Ren, Ke
Homayounfar, Negar
Oates, Thomas W.
Zhang, Ke
Liu, Jin
Hu, Tao
Xu, Hockin H. K.
author_sort Chen, Hong
collection PubMed
description Osteomyelitis and post-operative infections are major problems in orthopedic, dental and craniofacial surgeries. It is highly desirable for a tissue engineering construct to kill bacteria, while simultaneously delivering stem cells and enhancing cell function and tissue regeneration. The objectives of this study were to: (1) develop a novel injectable calcium phosphate cement (CPC) scaffold containing antibiotic ornidazole (ORZ) while encapsulating human periodontal ligament stem cells (hPDLSCs), and (2) investigate the inhibition efficacy against Staphylococcus aureus (S. aureus) and the promotion of hPDLSC function for osteogenesis for the first time. ORZ was incorporated into a CPC-chitosan scaffold. hPDLSCs were encapsulated in alginate microbeads (denoted hPDLSCbeads). The ORZ-loaded CPCC+hPDLSCbeads scaffold was fully injectable, and had a flexural strength of 3.50 ± 0.92 MPa and an elastic modulus of 1.30 ± 0.45 GPa, matching those of natural cancellous bone. With 6 days of sustained ORZ release, the CPCC+10ORZ (10% ORZ) scaffold had strong antibacterial effects on S. aureus, with an inhibition zone of 12.47 ± 1.01 mm. No colonies were observed in the CPCC+10ORZ group from 3 to 7 days. ORZ-containing scaffolds were biocompatible with hPDLSCs. CPCC+10ORZ+hPDLSCbeads scaffold with osteogenic medium had 2.4-fold increase in alkaline phosphatase (ALP) activity and bone mineral synthesis by hPDLSCs, as compared to the control group (p < 0.05). In conclusion, the novel antibacterial construct with stem cell delivery had injectability, good strength, strong antibacterial effects and biocompatibility, supporting osteogenic differentiation and bone mineral synthesis of hPDLSCs. The injectable and mechanically-strong CPCC+10ORZ+hPDLSCbeads construct has great potential for treating bone infections and promoting bone regeneration.
format Online
Article
Text
id pubmed-9057516
institution National Center for Biotechnology Information
language English
publishDate 2020
publisher The Royal Society of Chemistry
record_format MEDLINE/PubMed
spelling pubmed-90575162022-05-04 An antibacterial and injectable calcium phosphate scaffold delivering human periodontal ligament stem cells for bone tissue engineering Chen, Hong Yang, Hui Weir, Michael D. Schneider, Abraham Ren, Ke Homayounfar, Negar Oates, Thomas W. Zhang, Ke Liu, Jin Hu, Tao Xu, Hockin H. K. RSC Adv Chemistry Osteomyelitis and post-operative infections are major problems in orthopedic, dental and craniofacial surgeries. It is highly desirable for a tissue engineering construct to kill bacteria, while simultaneously delivering stem cells and enhancing cell function and tissue regeneration. The objectives of this study were to: (1) develop a novel injectable calcium phosphate cement (CPC) scaffold containing antibiotic ornidazole (ORZ) while encapsulating human periodontal ligament stem cells (hPDLSCs), and (2) investigate the inhibition efficacy against Staphylococcus aureus (S. aureus) and the promotion of hPDLSC function for osteogenesis for the first time. ORZ was incorporated into a CPC-chitosan scaffold. hPDLSCs were encapsulated in alginate microbeads (denoted hPDLSCbeads). The ORZ-loaded CPCC+hPDLSCbeads scaffold was fully injectable, and had a flexural strength of 3.50 ± 0.92 MPa and an elastic modulus of 1.30 ± 0.45 GPa, matching those of natural cancellous bone. With 6 days of sustained ORZ release, the CPCC+10ORZ (10% ORZ) scaffold had strong antibacterial effects on S. aureus, with an inhibition zone of 12.47 ± 1.01 mm. No colonies were observed in the CPCC+10ORZ group from 3 to 7 days. ORZ-containing scaffolds were biocompatible with hPDLSCs. CPCC+10ORZ+hPDLSCbeads scaffold with osteogenic medium had 2.4-fold increase in alkaline phosphatase (ALP) activity and bone mineral synthesis by hPDLSCs, as compared to the control group (p < 0.05). In conclusion, the novel antibacterial construct with stem cell delivery had injectability, good strength, strong antibacterial effects and biocompatibility, supporting osteogenic differentiation and bone mineral synthesis of hPDLSCs. The injectable and mechanically-strong CPCC+10ORZ+hPDLSCbeads construct has great potential for treating bone infections and promoting bone regeneration. The Royal Society of Chemistry 2020-11-04 /pmc/articles/PMC9057516/ /pubmed/35520873 http://dx.doi.org/10.1039/d0ra06873j Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Chen, Hong
Yang, Hui
Weir, Michael D.
Schneider, Abraham
Ren, Ke
Homayounfar, Negar
Oates, Thomas W.
Zhang, Ke
Liu, Jin
Hu, Tao
Xu, Hockin H. K.
An antibacterial and injectable calcium phosphate scaffold delivering human periodontal ligament stem cells for bone tissue engineering
title An antibacterial and injectable calcium phosphate scaffold delivering human periodontal ligament stem cells for bone tissue engineering
title_full An antibacterial and injectable calcium phosphate scaffold delivering human periodontal ligament stem cells for bone tissue engineering
title_fullStr An antibacterial and injectable calcium phosphate scaffold delivering human periodontal ligament stem cells for bone tissue engineering
title_full_unstemmed An antibacterial and injectable calcium phosphate scaffold delivering human periodontal ligament stem cells for bone tissue engineering
title_short An antibacterial and injectable calcium phosphate scaffold delivering human periodontal ligament stem cells for bone tissue engineering
title_sort antibacterial and injectable calcium phosphate scaffold delivering human periodontal ligament stem cells for bone tissue engineering
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9057516/
https://www.ncbi.nlm.nih.gov/pubmed/35520873
http://dx.doi.org/10.1039/d0ra06873j
work_keys_str_mv AT chenhong anantibacterialandinjectablecalciumphosphatescaffolddeliveringhumanperiodontalligamentstemcellsforbonetissueengineering
AT yanghui anantibacterialandinjectablecalciumphosphatescaffolddeliveringhumanperiodontalligamentstemcellsforbonetissueengineering
AT weirmichaeld anantibacterialandinjectablecalciumphosphatescaffolddeliveringhumanperiodontalligamentstemcellsforbonetissueengineering
AT schneiderabraham anantibacterialandinjectablecalciumphosphatescaffolddeliveringhumanperiodontalligamentstemcellsforbonetissueengineering
AT renke anantibacterialandinjectablecalciumphosphatescaffolddeliveringhumanperiodontalligamentstemcellsforbonetissueengineering
AT homayounfarnegar anantibacterialandinjectablecalciumphosphatescaffolddeliveringhumanperiodontalligamentstemcellsforbonetissueengineering
AT oatesthomasw anantibacterialandinjectablecalciumphosphatescaffolddeliveringhumanperiodontalligamentstemcellsforbonetissueengineering
AT zhangke anantibacterialandinjectablecalciumphosphatescaffolddeliveringhumanperiodontalligamentstemcellsforbonetissueengineering
AT liujin anantibacterialandinjectablecalciumphosphatescaffolddeliveringhumanperiodontalligamentstemcellsforbonetissueengineering
AT hutao anantibacterialandinjectablecalciumphosphatescaffolddeliveringhumanperiodontalligamentstemcellsforbonetissueengineering
AT xuhockinhk anantibacterialandinjectablecalciumphosphatescaffolddeliveringhumanperiodontalligamentstemcellsforbonetissueengineering
AT chenhong antibacterialandinjectablecalciumphosphatescaffolddeliveringhumanperiodontalligamentstemcellsforbonetissueengineering
AT yanghui antibacterialandinjectablecalciumphosphatescaffolddeliveringhumanperiodontalligamentstemcellsforbonetissueengineering
AT weirmichaeld antibacterialandinjectablecalciumphosphatescaffolddeliveringhumanperiodontalligamentstemcellsforbonetissueengineering
AT schneiderabraham antibacterialandinjectablecalciumphosphatescaffolddeliveringhumanperiodontalligamentstemcellsforbonetissueengineering
AT renke antibacterialandinjectablecalciumphosphatescaffolddeliveringhumanperiodontalligamentstemcellsforbonetissueengineering
AT homayounfarnegar antibacterialandinjectablecalciumphosphatescaffolddeliveringhumanperiodontalligamentstemcellsforbonetissueengineering
AT oatesthomasw antibacterialandinjectablecalciumphosphatescaffolddeliveringhumanperiodontalligamentstemcellsforbonetissueengineering
AT zhangke antibacterialandinjectablecalciumphosphatescaffolddeliveringhumanperiodontalligamentstemcellsforbonetissueengineering
AT liujin antibacterialandinjectablecalciumphosphatescaffolddeliveringhumanperiodontalligamentstemcellsforbonetissueengineering
AT hutao antibacterialandinjectablecalciumphosphatescaffolddeliveringhumanperiodontalligamentstemcellsforbonetissueengineering
AT xuhockinhk antibacterialandinjectablecalciumphosphatescaffolddeliveringhumanperiodontalligamentstemcellsforbonetissueengineering