Steklo i Keramika (Glass and Ceramics). Monthly scientific, technical and industrial journal

 

ISSN 0131-9582 (Online)

  • Continuous numbering: 995
  • Pages: 23-26
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Heading: Biomaterials

The results of a two-stage synthesis of tricalcium phosphate by the wet method followed by high-temperature treatment are presented. The influence of the introduction of tricalcium silicate and alkaline silicate glasses in the formation of biocomposite materials based on dicalcium phosphate dihydrate (DCPD) is considered. It was found that the use of bioactive glass 50S25N5P in an amount of up to 10% by weight increases the compressive strength and pH values ??to a physiologically safe level in the composite material in comparison with unmodified DCPD. The resulting composite ensures the formation of osteoid tissue for 30 days. Il. 6, bibliography: 4 titles.
Orlovsky V.P., Kurdyumov S.G., Slivka O.I. Synthesis, properties and application of calcium hydroxyapatite // Dentistry. 1996. N 5. S. 68 - 73. Vallet-Regi MJ Ceramics for medical applications // Chem. Soc., Dalton Trans. 2001. P. 97 - 108. Safronova TV Phase composition of ceramics based on calcium hydroxyapatite powders containing by-products of the synthesis reaction // Glass and ceramics. 2009. N 4. P. 21 - 24. Safronova TV Phase composition of ceramic based on calcium hydroxyapatite powders containing byproducts of the synthesis reaction // Glass and Ceramics. 2009. V. 66. N 4. P. 136 - 140. Beletskiy BI, Sventskaya NV Silicon in living organisms and new generation biocomposite materials // Glass and ceramics. 2009. N 3.P. 26 - 30. Beletskii BI, Sventskaya NV Silicon in living organisms and new-generation biocomposite materials (review) // Glass and Ceramics. 2009. V. 66. N 3. P. 104 - 109.

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Use the reference below to cite the publication

Yu. S. Lukina and N. V. Sventskaya Biocomposite material based on dihydrate of dicalcium phosphate. Steklo i keramika. 2010:83(11):23-26. (in Russ). UDK 661.842.455:61:666.3