Release of chlorhexidine digluconate and flexural properties of glass fibre reinforced provisional fixed partial denture polymer
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作者:
Milla S. Lahdenperä
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机构:Institute of Dentistry,Department of Prosthetic Dentistry & Biomaterials Research
Milla S. Lahdenperä
Mervi A. Puska
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机构:Institute of Dentistry,Department of Prosthetic Dentistry & Biomaterials Research
Mervi A. Puska
Pasi M. Alander
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机构:Institute of Dentistry,Department of Prosthetic Dentistry & Biomaterials Research
Pasi M. Alander
Tuomas Waltimo
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机构:Institute of Dentistry,Department of Prosthetic Dentistry & Biomaterials Research
Tuomas Waltimo
Pekka K. Vallittu
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机构:Institute of Dentistry,Department of Prosthetic Dentistry & Biomaterials Research
Pekka K. Vallittu
机构:
[1] Institute of Dentistry,Department of Prosthetic Dentistry & Biomaterials Research
[2] University of Turku,Institute of Preventive Dentistry and Oral Microbiology, School of Dentistry
[3] University of Basel,undefined
来源:
Journal of Materials Science: Materials in Medicine
|
2004年
/
15卷
关键词:
High Performance Liquid Chromatography;
Methacrylate;
Test Specimen;
Glass Fibre;
Flexural Strength;
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摘要:
The objective of this study was to determine the flexural properties and the release of chlorhexidine digluconate (CHX) of CHX laced unidirectional E-glass fibre reinforced provisional fixed partial denture polymer. Bar shaped test specimens (3.3 × 10.0 × 65.0 mm) were fabricated from provisional fixed partial denture polymer (mixture of poly[ethylmethacrylate] powder and n-poly[butyl methacrylate] monomer liquid) with E-glass fibre reinforcements. Poly(methyl methacrylate) preimpregnated continuous unidirectional glass fibre reinforcement was laced with CHX. The glass fibre reinforcements were incorporated into the polymer and the polymerised to the form of test specimens. In addition test specimens without CHX in glass fibre reinforcement were made for comparison. Control specimens did not contain glass fibres in the test specimens. Flexural strength and modulus of test specimens (n = 6) was tested with three-point bending test after storing the specimens dry or in water (two weeks). Released CHX was determined with high performance liquid chromatography during 180 days water immersion. In dry conditions, the flexural strength and the modulus of the polymer was 43 MPa and 1.7 GPa, and with glass fibre reinforcement 96 MPa and 3.5 GPa. With the reinforcement laced with CHX, the strength was 92 MPa and the modulus was 3.2 GPa. The water storage of test specimens did not weaken the reinforced polymer. The majority of the CHX released from the glass fibre reinforced polymer during the first days of storage in water. Flexural properties of provisional fixed partial denture polymer were increased using glass fibre reinforcement. The fibre reinforcement that was laced with CHX resulted in similar reinforcing effect.