In vitro study of the proliferation and growth of human fetal osteoblasts on Mg and Si co-substituted tricalcium phosphate ceramics.
basic_science · Level V
Where this comes from
- Record sourced from PubMed, PMID 28426904.
- Also identified by DOI 10.1002/jbm.a.36093.
- No licence information is recorded for this record.
- Because redistribution is not established, this page shows the abstract only. Follow the links below for the full text.
Abstract
The objective of this work was to study the feasibility of the solid state sintering, a conventional ceramic processing method, to obtain Mg and Si co-substituted tricalcium phosphate bioceramics and composites containing diopside. A series of new Ca<sub>3</sub> (PO<sub>4</sub> )<sub>2</sub> based ceramics has been prepared from attrition milled mixtures of synthetic Ca<sub>3</sub> (PO<sub>4</sub> )<sub>2</sub> and CaMg(SiO<sub>3</sub> )<sub>2</sub> powders, isostatically pressed and sintered at 1250-1300°C. Materials containing 0, 1, and 5 wt % of CaMg(SiO<sub>3</sub> )<sub>2</sub> were constituted by β + α - Ca<sub>3</sub> (PO<sub>4</sub> )<sub>2</sub> solid solutions while the material containing 60 wt % of CaMg(SiO<sub>3</sub> )<sub>2</sub> was a constituted by β- Ca<sub>3</sub> (PO<sub>4</sub> )<sub>2</sub> and CaMg(SiO<sub>3</sub> )<sub>2</sub> . The biological responses of the developed ceramics were studied in vitro using human fetal osteoblast cultures. Culture times ranged from 1 to 21 days. The new family of materials promotes the adhesion and proliferation of human osteoblasts cultured onto their surface forming a monolayer and showing a normal morphology. The results of the MTT and Alamar Blue assays showed that the soluble components extracted from the Mg/Si- co-substituted Ca<sub>3</sub> (PO<sub>4</sub> )<sub>2</sub> and the Ca<sub>3</sub> (PO<sub>4</sub> )<sub>2</sub> -CaMg(SiO<sub>3</sub> )<sub>2</sub> composite were noncytotoxic. The specimens with diopside exhibited a better in vitro behavior which is attributed to the release of Si and Mg ions to the culture medium, enhancing the activity of cells. © 2017 Wiley Periodicals, Inc. J Biomed Mater Res Part A: 105A: 2266-2275, 2017.
Medical subject headings
- Biocompatible Materials
- Calcium Phosphates
- Ceramics
- Magnesium
- Osteoblasts
- Silicon