A Composite Material Based on Poly(2-hydroxyethyl methacrylate) with Hydroxyapatite Microparticle Inclusions

An organo-mineral composite bone-grafting material was developed and tested. The composite material is based on synthetic hydroxyapatite (HAP) (30-60 wt%) integrated into the matrix of poly(2-hydroxyethyl methacrylate) (pHEMA) hydrogel. The composite was shown to have a homogeneous and isotropic mic...

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Published inBiomedical engineering Vol. 50; no. 4; pp. 241 - 244
Main Authors Kholuiskaya, S. N., Gorshenev, V. N., Filatova, A. G., Teleshev, A. T.
Format Journal Article
LanguageEnglish
Published New York Springer US 01.11.2016
Springer
Springer Nature B.V
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Abstract An organo-mineral composite bone-grafting material was developed and tested. The composite material is based on synthetic hydroxyapatite (HAP) (30-60 wt%) integrated into the matrix of poly(2-hydroxyethyl methacrylate) (pHEMA) hydrogel. The composite was shown to have a homogeneous and isotropic microstructure, mechanical strength of ~11 MPa, high degree of water absorption reaching 34%, and elastomeric properties under physio-logical conditions (strain at failure is 57%).
AbstractList An organo-mineral composite bone-grafting material was developed and tested. The composite material is based on synthetic hydroxyapatite (HAP) (30-60 wt%) integrated into the matrix of poly(2-hydroxyethyl methacrylate) (pHEMA) hydrogel. The composite was shown to have a homogeneous and isotropic microstructure, mechanical strength of ~11 MPa, high degree of water absorption reaching 34%, and elastomeric properties under physio-logical conditions (strain at failure is 57%).
An organo-mineral composite bone-grafting material was developed and tested. The composite material is based on synthetic hydroxyapatite (HAP) (30-60 wt%) integrated into the matrix of poly(2-hydroxyethyl methacrylate) (pHEMA) hydrogel. The composite was shown to have a homogeneous and isotropic microstructure, mechanical strength of ~11 MPa, high degree of water absorption reaching 34%, and elastomeric properties under physiological conditions (strain at failure is 57%).
Audience Academic
Author Filatova, A. G.
Teleshev, A. T.
Kholuiskaya, S. N.
Gorshenev, V. N.
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  surname: Gorshenev
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  organization: Emanuel Institute of Biochemical Physics, Russian Academy of Sciences
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  surname: Filatova
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  organization: Semenov Institute of Chemical Physics, Russian Academy of Sciences
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  givenname: A. T.
  surname: Teleshev
  fullname: Teleshev, A. T.
  organization: Moscow State Pedagogical University
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Cites_doi 10.1002/jbm.a.32110
10.1021/cr020607t
10.1016/j.polymer.2012.12.045
10.1021/cm203764f
10.1002/jbm.820170504
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SubjectTerms Biomaterials
Biomedical Engineering and Bioengineering
Biomedical materials
Bone grafts
Composite materials
Elastomers
Engineering
Hydrogels
Hydroxyapatite
Hydroxyapatites
Mechanical properties
Microparticles
Microstructure
Polyhydroxyethyl methacrylate
Strain
Surgical implants
Water absorption
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Title A Composite Material Based on Poly(2-hydroxyethyl methacrylate) with Hydroxyapatite Microparticle Inclusions
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