학술논문

The Effect of the Nanoscale Structure of Nanobioceramics on Their In Vitro Bioactivity and Cell Differentiation Properties.
Document Type
Article
Source
Journal of Nanomaterials. 12/9/2015, p1-14. 14p.
Subject
*BIOCERAMICS
*CELL differentiation
*IN vitro studies
*STEM cells
*NANOMEDICINE
*HYDROXYAPATITE in medicine
*BIOACTIVE glasses
*TISSUE engineering
Language
ISSN
1687-4110
Abstract
The effect of the nanoscale structure of bioceramics on their in vitro bioactivity and capacity to osteogenically differentiate stem cell is studied. Nanoparticles of hydroxyapatite (nHA), bioactive glass (nBG), nanoporous bioactive glass (MBG), and nanoporous bioactive glass nanospheres (nMBG) are investigated. The nanometric particle size of bioceramics seems to be more determining in controlling the ability to induce bone-like apatite as compared to the nanoporous structure. At short incubation time, nBG also produces a bioactive extracellular medium capable of upregulating key osteogenic markers involved in the development of a mineralizing phenotype in DPSCs. The bioactive properties of nBG are promissory for accelerating the bone regeneration process in tissue engineering applications. [ABSTRACT FROM AUTHOR]