Cargando…

Nanoscale Electrical Potential and Roughness of a Calcium Phosphate Surface Promotes the Osteogenic Phenotype of Stromal Cells

Mesenchymal stem cells (MSCs) and osteoblasts respond to the surface electrical charge and topography of biomaterials. This work focuses on the connection between the roughness of calcium phosphate (CP) surfaces and their electrical potential (EP) at the micro- and nanoscales and the possible role o...

Descripción completa

Detalles Bibliográficos
Autores principales: Khlusov, Igor A., Dekhtyar, Yuri, Sharkeev, Yurii P., Pichugin, Vladimir F., Khlusova, Marina Y., Polyaka, Nataliya, Tjulkins, Fjodors, Vendinya, Viktorija, Legostaeva, Elena V., Litvinova, Larisa S., Shupletsova, Valeria V., Khaziakhmatova, Olga G., Yurova, Kristina A., Prosolov, Konstantin A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6024922/
https://www.ncbi.nlm.nih.gov/pubmed/29890754
http://dx.doi.org/10.3390/ma11060978
_version_ 1783336164710678528
author Khlusov, Igor A.
Dekhtyar, Yuri
Sharkeev, Yurii P.
Pichugin, Vladimir F.
Khlusova, Marina Y.
Polyaka, Nataliya
Tjulkins, Fjodors
Vendinya, Viktorija
Legostaeva, Elena V.
Litvinova, Larisa S.
Shupletsova, Valeria V.
Khaziakhmatova, Olga G.
Yurova, Kristina A.
Prosolov, Konstantin A.
author_facet Khlusov, Igor A.
Dekhtyar, Yuri
Sharkeev, Yurii P.
Pichugin, Vladimir F.
Khlusova, Marina Y.
Polyaka, Nataliya
Tjulkins, Fjodors
Vendinya, Viktorija
Legostaeva, Elena V.
Litvinova, Larisa S.
Shupletsova, Valeria V.
Khaziakhmatova, Olga G.
Yurova, Kristina A.
Prosolov, Konstantin A.
author_sort Khlusov, Igor A.
collection PubMed
description Mesenchymal stem cells (MSCs) and osteoblasts respond to the surface electrical charge and topography of biomaterials. This work focuses on the connection between the roughness of calcium phosphate (CP) surfaces and their electrical potential (EP) at the micro- and nanoscales and the possible role of these parameters in jointly affecting human MSC osteogenic differentiation and maturation in vitro. A microarc CP coating was deposited on titanium substrates and characterized at the micro- and nanoscale. Human adult adipose-derived MSCs (hAMSCs) or prenatal stromal cells from the human lung (HLPSCs) were cultured on the CP surface to estimate MSC behavior. The roughness, nonuniform charge polarity, and EP of CP microarc coatings on a titanium substrate were shown to affect the osteogenic differentiation and maturation of hAMSCs and HLPSCs in vitro. The surface EP induced by the negative charge increased with increasing surface roughness at the microscale. The surface relief at the nanoscale had an impact on the sign of the EP. Negative electrical charges were mainly located within the micro- and nanosockets of the coating surface, whereas positive charges were detected predominantly at the nanorelief peaks. HLPSCs located in the sockets of the CP surface expressed the osteoblastic markers osteocalcin and alkaline phosphatase. The CP multilevel topography induced charge polarity and an EP and overall promoted the osteoblast phenotype of HLPSCs. The negative sign of the EP and its magnitude at the micro- and nanosockets might be sensitive factors that can trigger osteoblastic differentiation and maturation of human stromal cells.
format Online
Article
Text
id pubmed-6024922
institution National Center for Biotechnology Information
language English
publishDate 2018
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-60249222018-07-09 Nanoscale Electrical Potential and Roughness of a Calcium Phosphate Surface Promotes the Osteogenic Phenotype of Stromal Cells Khlusov, Igor A. Dekhtyar, Yuri Sharkeev, Yurii P. Pichugin, Vladimir F. Khlusova, Marina Y. Polyaka, Nataliya Tjulkins, Fjodors Vendinya, Viktorija Legostaeva, Elena V. Litvinova, Larisa S. Shupletsova, Valeria V. Khaziakhmatova, Olga G. Yurova, Kristina A. Prosolov, Konstantin A. Materials (Basel) Article Mesenchymal stem cells (MSCs) and osteoblasts respond to the surface electrical charge and topography of biomaterials. This work focuses on the connection between the roughness of calcium phosphate (CP) surfaces and their electrical potential (EP) at the micro- and nanoscales and the possible role of these parameters in jointly affecting human MSC osteogenic differentiation and maturation in vitro. A microarc CP coating was deposited on titanium substrates and characterized at the micro- and nanoscale. Human adult adipose-derived MSCs (hAMSCs) or prenatal stromal cells from the human lung (HLPSCs) were cultured on the CP surface to estimate MSC behavior. The roughness, nonuniform charge polarity, and EP of CP microarc coatings on a titanium substrate were shown to affect the osteogenic differentiation and maturation of hAMSCs and HLPSCs in vitro. The surface EP induced by the negative charge increased with increasing surface roughness at the microscale. The surface relief at the nanoscale had an impact on the sign of the EP. Negative electrical charges were mainly located within the micro- and nanosockets of the coating surface, whereas positive charges were detected predominantly at the nanorelief peaks. HLPSCs located in the sockets of the CP surface expressed the osteoblastic markers osteocalcin and alkaline phosphatase. The CP multilevel topography induced charge polarity and an EP and overall promoted the osteoblast phenotype of HLPSCs. The negative sign of the EP and its magnitude at the micro- and nanosockets might be sensitive factors that can trigger osteoblastic differentiation and maturation of human stromal cells. MDPI 2018-06-09 /pmc/articles/PMC6024922/ /pubmed/29890754 http://dx.doi.org/10.3390/ma11060978 Text en © 2018 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Khlusov, Igor A.
Dekhtyar, Yuri
Sharkeev, Yurii P.
Pichugin, Vladimir F.
Khlusova, Marina Y.
Polyaka, Nataliya
Tjulkins, Fjodors
Vendinya, Viktorija
Legostaeva, Elena V.
Litvinova, Larisa S.
Shupletsova, Valeria V.
Khaziakhmatova, Olga G.
Yurova, Kristina A.
Prosolov, Konstantin A.
Nanoscale Electrical Potential and Roughness of a Calcium Phosphate Surface Promotes the Osteogenic Phenotype of Stromal Cells
title Nanoscale Electrical Potential and Roughness of a Calcium Phosphate Surface Promotes the Osteogenic Phenotype of Stromal Cells
title_full Nanoscale Electrical Potential and Roughness of a Calcium Phosphate Surface Promotes the Osteogenic Phenotype of Stromal Cells
title_fullStr Nanoscale Electrical Potential and Roughness of a Calcium Phosphate Surface Promotes the Osteogenic Phenotype of Stromal Cells
title_full_unstemmed Nanoscale Electrical Potential and Roughness of a Calcium Phosphate Surface Promotes the Osteogenic Phenotype of Stromal Cells
title_short Nanoscale Electrical Potential and Roughness of a Calcium Phosphate Surface Promotes the Osteogenic Phenotype of Stromal Cells
title_sort nanoscale electrical potential and roughness of a calcium phosphate surface promotes the osteogenic phenotype of stromal cells
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6024922/
https://www.ncbi.nlm.nih.gov/pubmed/29890754
http://dx.doi.org/10.3390/ma11060978
work_keys_str_mv AT khlusovigora nanoscaleelectricalpotentialandroughnessofacalciumphosphatesurfacepromotestheosteogenicphenotypeofstromalcells
AT dekhtyaryuri nanoscaleelectricalpotentialandroughnessofacalciumphosphatesurfacepromotestheosteogenicphenotypeofstromalcells
AT sharkeevyuriip nanoscaleelectricalpotentialandroughnessofacalciumphosphatesurfacepromotestheosteogenicphenotypeofstromalcells
AT pichuginvladimirf nanoscaleelectricalpotentialandroughnessofacalciumphosphatesurfacepromotestheosteogenicphenotypeofstromalcells
AT khlusovamarinay nanoscaleelectricalpotentialandroughnessofacalciumphosphatesurfacepromotestheosteogenicphenotypeofstromalcells
AT polyakanataliya nanoscaleelectricalpotentialandroughnessofacalciumphosphatesurfacepromotestheosteogenicphenotypeofstromalcells
AT tjulkinsfjodors nanoscaleelectricalpotentialandroughnessofacalciumphosphatesurfacepromotestheosteogenicphenotypeofstromalcells
AT vendinyaviktorija nanoscaleelectricalpotentialandroughnessofacalciumphosphatesurfacepromotestheosteogenicphenotypeofstromalcells
AT legostaevaelenav nanoscaleelectricalpotentialandroughnessofacalciumphosphatesurfacepromotestheosteogenicphenotypeofstromalcells
AT litvinovalarisas nanoscaleelectricalpotentialandroughnessofacalciumphosphatesurfacepromotestheosteogenicphenotypeofstromalcells
AT shupletsovavaleriav nanoscaleelectricalpotentialandroughnessofacalciumphosphatesurfacepromotestheosteogenicphenotypeofstromalcells
AT khaziakhmatovaolgag nanoscaleelectricalpotentialandroughnessofacalciumphosphatesurfacepromotestheosteogenicphenotypeofstromalcells
AT yurovakristinaa nanoscaleelectricalpotentialandroughnessofacalciumphosphatesurfacepromotestheosteogenicphenotypeofstromalcells
AT prosolovkonstantina nanoscaleelectricalpotentialandroughnessofacalciumphosphatesurfacepromotestheosteogenicphenotypeofstromalcells