Citation
M. Tanahashi et al., APATITE FORMATION ON ORGANIC POLYMERS BY BIOMIMETIC PROCESS USING NA2O-SIO2 GLASSES AS NUCLEATING-AGENT, Nippon Seramikkusu Kyokai gakujutsu ronbunshi, 102(9), 1994, pp. 822-829
Abstract
The present authors previously reported that a dense and uniform bone-
like apatite layer with a desired thickness can be formed on any kind
and shape of solid substance by the following biomimetic method at nor
mal temperature and pressure. First, a substrate is set in contact wit
h particles of CaO-SiO2-based glass soaked in a simulated body fluid (
SBF) with ion concentrations nearly equal to those of human blood plas
ma. Second, the substrate is soaked in another solution highly supersa
turated with respect to the apatite. In the present study, the CaO-SiO
2-based glass as the nucleating agent was replaced by Na2O-SiO2 glasse
s, SiO2 glass and SiO2 gel. The induction periods for the apatite nucl
eation on poly-ethersulfone substrates were infinity, a little longer
than 168, 96, 48, 1.5 and 0.5h for SiO2 glass, SiO2 gel, Na2O 10.SiO2
90, Na2O 20.SiO2 80, Na2O 30.SiO2 70 and Na2O 40.SiO2 60 mol% glasses,
respectively, whereas 24h for MgO 4.6.CaO 44.7.SiO2 34.0.P2O5 16.2.Ca
F2 0.5 wt% glass G. The short induction period for the glasses with hi
gh Na2O contents is attributed to high dissolution rates of sodium and
silicate ions from them. The adhesive strengths of the formed apatite
layer to the poly(ethylene terephthalate), poly(methyl methacrylate),
poly-ethersulfone and polyamide 6 were 5.37, 1.63, 6.80 and 2.91 MPa
for Na2O 30.SiO2 70 mol% glass, whereas 3.48, 1.06, 4.40 and 0.63 MPa
for glass G. It is considered that highly polar carboxyl or sulfinyl g
roups were formed on the polymer surfaces by the hydrolysis of their e
ster, amide or sulfonyl group in SBF with its pH considerably increase
d by the Na+ dissolution from the glass, and that these polar groups f
ormed a fairly strong bond with the apatite. Thus formed apatite-organ
ic polymer composites are expected to be useful as the bone-repairing
as well as soft tissue-repairing materials.