THREE-DIMENSIONAL MODELS BASED ON POLYLACTIDE AND HYDROXYAPATITE

Three-dimensional models based on polylactide containing 1 and 5% hydroxyapatite were obtained by the method of fused deposition. In vitro testing showed that a surface modification of the polymer models with 4% hydroxyapatite gel or an aqueous suspension containing 4% polyvinyl alcohol and 4% hydro...

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Main Authors: O.N. Musskaya, V.K. Krut’ko, A.I. Kulak, A.A. Nasan, S.S. Hvesenya, .A. Dobysh, V.A. Tarasevich, N.L. Budeiko, O.A. Sycheva
Format: Article
Language:Russian
Published: Tver State University 2019-12-01
Series:Физико-химические аспекты изучения кластеров, наноструктур и наноматериалов
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Online Access:https://physchemaspects.ru/2019/doi-10-26456-pcascnn-2019-11-326/?lang=en
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author O.N. Musskaya
V.K. Krut’ko
A.I. Kulak
A.A. Nasan
S.S. Hvesenya
.A. Dobysh
V.A. Tarasevich
N.L. Budeiko
O.A. Sycheva
author_facet O.N. Musskaya
V.K. Krut’ko
A.I. Kulak
A.A. Nasan
S.S. Hvesenya
.A. Dobysh
V.A. Tarasevich
N.L. Budeiko
O.A. Sycheva
author_sort O.N. Musskaya
collection DOAJ
description Three-dimensional models based on polylactide containing 1 and 5% hydroxyapatite were obtained by the method of fused deposition. In vitro testing showed that a surface modification of the polymer models with 4% hydroxyapatite gel or an aqueous suspension containing 4% polyvinyl alcohol and 4% hydroxyapatite can improve bioactive properties of such materials.
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spelling doaj.art-07e384aef06445c7937fe4c5169ea9f92022-12-22T00:42:18ZrusTver State UniversityФизико-химические аспекты изучения кластеров, наноструктур и наноматериалов2226-44422658-43602019-12-011132633510.26456/pcascnn/2019.11.326THREE-DIMENSIONAL MODELS BASED ON POLYLACTIDE AND HYDROXYAPATITEO.N. Musskaya0 V.K. Krut’ko1A.I. Kulak2A.A. Nasan3S.S. Hvesenya4.A. Dobysh5V.A. Tarasevich6N.L. Budeiko7O.A. Sycheva8Institute of General and Inorganic Chemistry of the National Academy of Sciences of Belarus, Minsk, BelarusInstitute of General and Inorganic Chemistry of the National Academy of Sciences of Belarus, Minsk, BelarusInstitute of General and Inorganic Chemistry of the National Academy of Sciences of Belarus, Minsk, BelarusBelarusian State University, Minsk, BelarusBelarusian State University, Minsk, BelarusInstitute of Chemistry of New Materials of the National Academy of Sciences of Belarus, Minsk, BelarusInstitute of Chemistry of New Materials of the National Academy of Sciences of Belarus, Minsk, BelarusInstitute of General and Inorganic Chemistry of the National Academy of Sciences of Belarus, Minsk, BelarusInstitute of General and Inorganic Chemistry of the National Academy of Sciences of Belarus, Minsk, BelarusThree-dimensional models based on polylactide containing 1 and 5% hydroxyapatite were obtained by the method of fused deposition. In vitro testing showed that a surface modification of the polymer models with 4% hydroxyapatite gel or an aqueous suspension containing 4% polyvinyl alcohol and 4% hydroxyapatite can improve bioactive properties of such materials.https://physchemaspects.ru/2019/doi-10-26456-pcascnn-2019-11-326/?lang=en3d printingfused depositionpolylactidehydroxyapatitepolyvinyl alcohol
spellingShingle O.N. Musskaya
V.K. Krut’ko
A.I. Kulak
A.A. Nasan
S.S. Hvesenya
.A. Dobysh
V.A. Tarasevich
N.L. Budeiko
O.A. Sycheva
THREE-DIMENSIONAL MODELS BASED ON POLYLACTIDE AND HYDROXYAPATITE
Физико-химические аспекты изучения кластеров, наноструктур и наноматериалов
3d printing
fused deposition
polylactide
hydroxyapatite
polyvinyl alcohol
title THREE-DIMENSIONAL MODELS BASED ON POLYLACTIDE AND HYDROXYAPATITE
title_full THREE-DIMENSIONAL MODELS BASED ON POLYLACTIDE AND HYDROXYAPATITE
title_fullStr THREE-DIMENSIONAL MODELS BASED ON POLYLACTIDE AND HYDROXYAPATITE
title_full_unstemmed THREE-DIMENSIONAL MODELS BASED ON POLYLACTIDE AND HYDROXYAPATITE
title_short THREE-DIMENSIONAL MODELS BASED ON POLYLACTIDE AND HYDROXYAPATITE
title_sort three dimensional models based on polylactide and hydroxyapatite
topic 3d printing
fused deposition
polylactide
hydroxyapatite
polyvinyl alcohol
url https://physchemaspects.ru/2019/doi-10-26456-pcascnn-2019-11-326/?lang=en
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AT sshvesenya threedimensionalmodelsbasedonpolylactideandhydroxyapatite
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AT vatarasevich threedimensionalmodelsbasedonpolylactideandhydroxyapatite
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