Effect of polylactic acid-polyethylene glycol composite fibrous materials on adhesion, multiplication and viability of osteoblasts
Lu Jian
Yang Zhen-lei
Hou Ren
Abstract:BACKGROUND:Recent advances in polylactic acid-polyethylene glycol (PLA-PEG) block copolymer and hydroxyapatite surface-grafted with poly(l-lactide) (HA-g-PLLA), including their synthesis and preparation, have been approved for application in bone tissue engineering. But they have stil many disadvantages. Combination of HA-g-PLLA and PEG-PLA could show a great potential for development in bone tissue engineering. OBJECTIVE:To investigate the effect of PLA-PEG/HA-g-PLLA composite fibrous material with different content of HA-g-PLLA on adhesion, multiplication and cellviability of osteoblasts. METHODS:Four fibrous materials of 5%PLA-PEG, 5%PLA-PEG/5%HA-g-PLLA, 5%PLA-PEG/10%HA-g-PLLA, 5%PLA-PEG/15%HA-g-PLLA were prepared using electrospinning technique and divided into four experimental groups. Mouse osteoblasts were inoculated on the materials. A statistical analysis was done based on results&nbsp;from celldyeing and alkaline phosphatase detection at certain time points to evaluate the effect of new materials on osteoblast adhesion, proliferation and viability. RESULTS AND CONCLUSION:In the experiment of cellmultiplication and the test of alkaline phosphatase activity, both absorbance values and activity of alkaline phosphatase from high to low were 5%PLA-PEG/10%HA-g-PLLA>5%PLA-PEG/15%HA-g-PLLA>5%PLA-PEG/5%HA-g-PLLA>5%HA-g-PLLA (P<0.05). The absorbance value of PLA-PEG/HA-g-PLLA roughly presented a waveform with the increasing addition of HA-g-PLLA. The effect of PLA-PEG/HA-g-PLLA composite fibrous material on adhesion, multiplication and osteogensis of osteoblasts increases with addition of HA-g-PLLA in a certain range.
Keywords:tissue engineeringosteoblastsproliferationalkaline phosphatase
Publication Date:2014-01-01
Online Publishing Date:2025-08-15(First online date of this platform, not the publication date of the document)
Pages:6( 6246-6251 )
Chinese Journal of Tissue Engineering Research

Chinese Journal of Tissue Engineering Research

PKUISTIC
ISSN:2095-4344
Year, Vol.(Issue):2014,(39)