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ID 117741
Author
Fujioka-Kobayashi, Masako Bern University|Tokushima University KAKEN Search Researchers
Schaller, Benoit Bern University
Kobayashi, Eizaburo Bern University
Hernandez, Maria Nova Southeastern University
Zhang, Yufeng University of Wuhan
Miron, Richard J. Nova Southeastern University|University of Michigan
Keywords
osteoinduction
osteoinductive
guided bone regeneration
bone formation
bone induction
BMP
growth factor
dimensional changes
regenerative therapy
hard tissue regeneration
Content Type
Journal Article
Description
Hyaluronic acid (HA) has been utilized for a variety of regenerative medical procedures due to its widespread presence in connective tissue and perceived biocompatibility. The aim of the present study was to investigate HA in combination with recombinant human bone morphogenetic protein 9 (rhBMP9), one of the most osteogenic growth factors of the BMP family. HA was first combined with rhBMP9 and assessed for the adsorption and release of rhBMP9 over 10 days by ELISA. Thereafter, ST2 pre-osteoblasts were investigated by comparing (1) control tissue culture plastic, (2) HA alone, and (3) HA with rhBMP9 (100 ng/mL). Cellular proliferation was investigated by a MTS assay at one, three and five days and osteoblast differentiation was investigated by alkaline phosphatase (ALP) activity at seven days, alizarin red staining at 14 days and real-time PCR for osteoblast differentiation markers. The results demonstrated that rhBMP9 adsorbed within HA scaffolds and was released over a 10-day period in a controlled manner. While HA and rhBMP9 had little effect on cell proliferation, a marked and pronounced effect was observed for cell differentiation. rhBMP9 significantly induced ALP activity, mRNA levels of collagen1α2, and ALP and osteocalcin (OCN) at three or 14 days. HA also demonstrated some ability to induce osteoblast differentiation by increasing mRNA levels of OCN and increasing alizarin red staining at 14 days. In conclusion, the results from the present study demonstrate that (1) HA may serve as a potential carrier for various growth factors, and (2) rhBMP9 is a potent and promising inducer of osteoblast differentiation. Future animal studies are now necessary to investigate this combination approach in vivo.
Journal Title
Journal of Clinical Medicine
ISSN
20770383
Publisher
MDPI
Volume
5
Issue
12
Start Page
112
Published Date
2016-11-30
Rights
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/).
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DOI (Published Version)
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language
eng
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departments
Oral Sciences