Hydroxyapatite (HA) has been used clinically to treat bone defects. However, modifications of the surface properties of HA could improve and control bone matrix deposition and localized host tissue integration. The aim of this study was to investigate the effect of developing a surface charge on HA
Polarized hydroxyapatite promotes spread and motility of osteoblastic cells
โ Scribed by Miho Nakamura; Akiko Nagai; Yumi Tanaka; Yasutaka Sekijima; Kimihiro Yamashita
- Publisher
- John Wiley and Sons
- Year
- 2009
- Tongue
- English
- Weight
- 250 KB
- Volume
- 9999A
- Category
- Article
- ISSN
- 1549-3296
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โฆ Synopsis
Abstract
Osteoblast adhesion to surfaces of implant substrates is recognized as playing a fundamental role in the process of osteoconduction. The purpose of this study was to evaluate the in vitro adhesion of osteoblasts cultured on polarized hydroxyapatite (HA), which provides two kinds of surfaces; negatively charged HA (NโHA) and positively charged HA (PโHA). Those surfaces have been proved to enhance the osteobonding capabilities. Osteoblastic cells were seeded onto normal and polarized HA; adhesion and motility of each was observed. Polarization did not affect the percentage of the spread cells against all the adhered cells, but had a significant effect on the spreading of each cell as shown by the measured elongation of the adhered cells by fluorescence observation. The elongation of each cell was especially enhanced on the NโHA and PโHA, when compared with normal HA (OโHA). In addition, the polarization affected cell motility shown by wound healing. Motility analysis showed that the same number of cells started to migrate toward the wound areas on each type of surface. However, the migration of each cell type towards the wound area was accelerated on the NโHA and PโHA. The charges induced on the HA surface accelerated the cytoskeleton reorganization of the adhered cells. The acceleration was appeared as cell shape, actin filament pattern such as stress fiber formation, and prolongation of cell motility distance. ยฉ 2009 Wiley Periodicals, Inc. J Biomed Mater Res, 2010
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