Abstract:
:Poly(epsilon-caprolactone) (PCL)/continuous bioglass fibre composite was prepared using the monomer transfer moulding technique coupled with a surface initiated polymerisation. The bioglass fibres were surface treated with an amine ended silane in order to initiate polymerisation of epsilon-caprolactone from the fibre surface. Surface initiated polymerisation significantly improved the Young's modulus and flexural strength and water resistance of the composite. Initial in vitro biocompatibility assessment suggests that amine ended silane treatment of bioglass fibres before their inclusion in the composite does not have a negative effect on the biological responses in terms of macrophage activation as measured by IL-1beta release and craniofacial osteoblast attachment.
journal_name
Biomaterialsjournal_title
Biomaterialsauthors
Jiang G,Evans ME,Jones IA,Rudd CD,Scotchford CA,Walker GSdoi
10.1016/j.biomaterials.2004.07.042keywords:
subject
Has Abstractpub_date
2005-05-01 00:00:00pages
2281-8issue
15eissn
0142-9612issn
1878-5905pii
S0142-9612(04)00695-7journal_volume
26pub_type
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