Cargando…
The Effect of Heat Treatment of β-Tricalcium Phosphate-Containing Silica-Based Bioactive Aerogels on the Cellular Metabolism and Proliferation of MG63 Cells
β-Tricalcium phosphate was combined with silica aerogel in composites prepared using the sol–gel technique and supercritical drying. The materials were used in this study to check their biological activity and bone regeneration potential with MG63 cell experiments. The composites were sintered in 10...
Autores principales: | , , , , , , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
MDPI
2022
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8945762/ https://www.ncbi.nlm.nih.gov/pubmed/35327463 http://dx.doi.org/10.3390/biomedicines10030662 |
_version_ | 1784674030905720832 |
---|---|
author | Hegedűs, Csaba Czibulya, Zsuzsanna Tóth, Ferenc Dezső, Balázs Hegedűs, Viktória Boda, Róbert Horváth, Dóra Csík, Attila Fábián, István Tóth-Győri, Enikő Sajtos, Zsófi Lázár, István |
author_facet | Hegedűs, Csaba Czibulya, Zsuzsanna Tóth, Ferenc Dezső, Balázs Hegedűs, Viktória Boda, Róbert Horváth, Dóra Csík, Attila Fábián, István Tóth-Győri, Enikő Sajtos, Zsófi Lázár, István |
author_sort | Hegedűs, Csaba |
collection | PubMed |
description | β-Tricalcium phosphate was combined with silica aerogel in composites prepared using the sol–gel technique and supercritical drying. The materials were used in this study to check their biological activity and bone regeneration potential with MG63 cell experiments. The composites were sintered in 100 °C steps in the range of 500–1000 °C. Their mechanical properties, porosities, and solubility were determined as a function of sintering temperature. Dissolution studies revealed that the released Ca-/P molar ratios appeared to be in the optimal range to support bone tissue induction. Cell viability, ALP activity, and type I collagen gene expression results all suggested that the sintering of the compound at approximately 700–800 °C as a scaffold could be more powerful in vivo to facilitate bone formation within a bone defect, compared to that documented previously by our research team. We did not observe any detrimental effect on cell viability. Both the alkaline phosphatase enzyme activity and the type I collagen gene expression were significantly higher compared with the control and the other aerogels heat-treated at different temperatures. The mesoporous silica-based aerogel composites containing β-tricalcium phosphate particles treated at temperatures lower than 1000 °C produced a positive effect on the osteoblastic activity of MG63 cells. An in vivo 6 month-long follow-up study of the mechanically strongest 1000 °C sample in rat calvaria experiments provided proof of a complete remodeling of the bone. |
format | Online Article Text |
id | pubmed-8945762 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2022 |
publisher | MDPI |
record_format | MEDLINE/PubMed |
spelling | pubmed-89457622022-03-25 The Effect of Heat Treatment of β-Tricalcium Phosphate-Containing Silica-Based Bioactive Aerogels on the Cellular Metabolism and Proliferation of MG63 Cells Hegedűs, Csaba Czibulya, Zsuzsanna Tóth, Ferenc Dezső, Balázs Hegedűs, Viktória Boda, Róbert Horváth, Dóra Csík, Attila Fábián, István Tóth-Győri, Enikő Sajtos, Zsófi Lázár, István Biomedicines Article β-Tricalcium phosphate was combined with silica aerogel in composites prepared using the sol–gel technique and supercritical drying. The materials were used in this study to check their biological activity and bone regeneration potential with MG63 cell experiments. The composites were sintered in 100 °C steps in the range of 500–1000 °C. Their mechanical properties, porosities, and solubility were determined as a function of sintering temperature. Dissolution studies revealed that the released Ca-/P molar ratios appeared to be in the optimal range to support bone tissue induction. Cell viability, ALP activity, and type I collagen gene expression results all suggested that the sintering of the compound at approximately 700–800 °C as a scaffold could be more powerful in vivo to facilitate bone formation within a bone defect, compared to that documented previously by our research team. We did not observe any detrimental effect on cell viability. Both the alkaline phosphatase enzyme activity and the type I collagen gene expression were significantly higher compared with the control and the other aerogels heat-treated at different temperatures. The mesoporous silica-based aerogel composites containing β-tricalcium phosphate particles treated at temperatures lower than 1000 °C produced a positive effect on the osteoblastic activity of MG63 cells. An in vivo 6 month-long follow-up study of the mechanically strongest 1000 °C sample in rat calvaria experiments provided proof of a complete remodeling of the bone. MDPI 2022-03-12 /pmc/articles/PMC8945762/ /pubmed/35327463 http://dx.doi.org/10.3390/biomedicines10030662 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/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 (https://creativecommons.org/licenses/by/4.0/). |
spellingShingle | Article Hegedűs, Csaba Czibulya, Zsuzsanna Tóth, Ferenc Dezső, Balázs Hegedűs, Viktória Boda, Róbert Horváth, Dóra Csík, Attila Fábián, István Tóth-Győri, Enikő Sajtos, Zsófi Lázár, István The Effect of Heat Treatment of β-Tricalcium Phosphate-Containing Silica-Based Bioactive Aerogels on the Cellular Metabolism and Proliferation of MG63 Cells |
title | The Effect of Heat Treatment of β-Tricalcium Phosphate-Containing Silica-Based Bioactive Aerogels on the Cellular Metabolism and Proliferation of MG63 Cells |
title_full | The Effect of Heat Treatment of β-Tricalcium Phosphate-Containing Silica-Based Bioactive Aerogels on the Cellular Metabolism and Proliferation of MG63 Cells |
title_fullStr | The Effect of Heat Treatment of β-Tricalcium Phosphate-Containing Silica-Based Bioactive Aerogels on the Cellular Metabolism and Proliferation of MG63 Cells |
title_full_unstemmed | The Effect of Heat Treatment of β-Tricalcium Phosphate-Containing Silica-Based Bioactive Aerogels on the Cellular Metabolism and Proliferation of MG63 Cells |
title_short | The Effect of Heat Treatment of β-Tricalcium Phosphate-Containing Silica-Based Bioactive Aerogels on the Cellular Metabolism and Proliferation of MG63 Cells |
title_sort | effect of heat treatment of β-tricalcium phosphate-containing silica-based bioactive aerogels on the cellular metabolism and proliferation of mg63 cells |
topic | Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8945762/ https://www.ncbi.nlm.nih.gov/pubmed/35327463 http://dx.doi.org/10.3390/biomedicines10030662 |
work_keys_str_mv | AT hegeduscsaba theeffectofheattreatmentofbtricalciumphosphatecontainingsilicabasedbioactiveaerogelsonthecellularmetabolismandproliferationofmg63cells AT czibulyazsuzsanna theeffectofheattreatmentofbtricalciumphosphatecontainingsilicabasedbioactiveaerogelsonthecellularmetabolismandproliferationofmg63cells AT tothferenc theeffectofheattreatmentofbtricalciumphosphatecontainingsilicabasedbioactiveaerogelsonthecellularmetabolismandproliferationofmg63cells AT dezsobalazs theeffectofheattreatmentofbtricalciumphosphatecontainingsilicabasedbioactiveaerogelsonthecellularmetabolismandproliferationofmg63cells AT hegedusviktoria theeffectofheattreatmentofbtricalciumphosphatecontainingsilicabasedbioactiveaerogelsonthecellularmetabolismandproliferationofmg63cells AT bodarobert theeffectofheattreatmentofbtricalciumphosphatecontainingsilicabasedbioactiveaerogelsonthecellularmetabolismandproliferationofmg63cells AT horvathdora theeffectofheattreatmentofbtricalciumphosphatecontainingsilicabasedbioactiveaerogelsonthecellularmetabolismandproliferationofmg63cells AT csikattila theeffectofheattreatmentofbtricalciumphosphatecontainingsilicabasedbioactiveaerogelsonthecellularmetabolismandproliferationofmg63cells AT fabianistvan theeffectofheattreatmentofbtricalciumphosphatecontainingsilicabasedbioactiveaerogelsonthecellularmetabolismandproliferationofmg63cells AT tothgyorieniko theeffectofheattreatmentofbtricalciumphosphatecontainingsilicabasedbioactiveaerogelsonthecellularmetabolismandproliferationofmg63cells AT sajtoszsofi theeffectofheattreatmentofbtricalciumphosphatecontainingsilicabasedbioactiveaerogelsonthecellularmetabolismandproliferationofmg63cells AT lazaristvan theeffectofheattreatmentofbtricalciumphosphatecontainingsilicabasedbioactiveaerogelsonthecellularmetabolismandproliferationofmg63cells AT hegeduscsaba effectofheattreatmentofbtricalciumphosphatecontainingsilicabasedbioactiveaerogelsonthecellularmetabolismandproliferationofmg63cells AT czibulyazsuzsanna effectofheattreatmentofbtricalciumphosphatecontainingsilicabasedbioactiveaerogelsonthecellularmetabolismandproliferationofmg63cells AT tothferenc effectofheattreatmentofbtricalciumphosphatecontainingsilicabasedbioactiveaerogelsonthecellularmetabolismandproliferationofmg63cells AT dezsobalazs effectofheattreatmentofbtricalciumphosphatecontainingsilicabasedbioactiveaerogelsonthecellularmetabolismandproliferationofmg63cells AT hegedusviktoria effectofheattreatmentofbtricalciumphosphatecontainingsilicabasedbioactiveaerogelsonthecellularmetabolismandproliferationofmg63cells AT bodarobert effectofheattreatmentofbtricalciumphosphatecontainingsilicabasedbioactiveaerogelsonthecellularmetabolismandproliferationofmg63cells AT horvathdora effectofheattreatmentofbtricalciumphosphatecontainingsilicabasedbioactiveaerogelsonthecellularmetabolismandproliferationofmg63cells AT csikattila effectofheattreatmentofbtricalciumphosphatecontainingsilicabasedbioactiveaerogelsonthecellularmetabolismandproliferationofmg63cells AT fabianistvan effectofheattreatmentofbtricalciumphosphatecontainingsilicabasedbioactiveaerogelsonthecellularmetabolismandproliferationofmg63cells AT tothgyorieniko effectofheattreatmentofbtricalciumphosphatecontainingsilicabasedbioactiveaerogelsonthecellularmetabolismandproliferationofmg63cells AT sajtoszsofi effectofheattreatmentofbtricalciumphosphatecontainingsilicabasedbioactiveaerogelsonthecellularmetabolismandproliferationofmg63cells AT lazaristvan effectofheattreatmentofbtricalciumphosphatecontainingsilicabasedbioactiveaerogelsonthecellularmetabolismandproliferationofmg63cells |