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School of Electromechanical Engineering, Guangdong University of Technology, Guangzhou, 510006, China
School of Materials Science and Engineering, South China University of Technology, Guangzhou, 510641, China
Export Date: 15 March 2020
CODEN: JBMRC
Correspondence Address: He, F.; School of Electromechanical Engineering, Guangdong University of TechnologyChina; email: fphe@gdut.edu.cn
Chemicals/CAS: alkaline phosphatase, 9001-78-9; calcium phosphate, 10103-46-5, 13767-12-9, 14358-97-5, 7758-87-4; cathepsin, 9004-08-4; gallium, 7440-55-3, 14391-02-7; gelatinase B, 146480-36-6; osteocalcin, 136461-80-8; osteoprotegerin, 205944-50-9; phosphate, 14066-19-4, 14265-44-2; transcription factor NFAT, 292890-46-1
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Modification of honeycomb bioceramic scaffolds for bone regeneration under the condition of excessive bone resorption
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Gallium (Ga) ions have been clinically approved for treating the diseases caused by the excessive bone resorption through the systemic administration. Nevertheless, little attention has been given to the Ga-containing biomaterials for repairing bone defects under the pathological condition of excessive bone resorption. In the current study, for the first time the Ga-containing phosphate glasses (GPGs) were introduced to modify the honeycomb beta-tricalcium phosphate (beta-TCP) bioceramic scaffolds, which were prepared by an extrusion method. The results indicated that the scaffolds were characterized by uniform pore structure and channel-like macropores. The addition of GPGs promoted densification of strut of scaffolds by achieving liquid-sintering of beta-TCP, thereby tremendously increasing the compressive strength. The ions released from scaffolds pronouncedly inhibited osteoclastogenesis-related gene expressions and multinuclearity of RAW264.7 murine monocyte cells, as well as expressions of early osteogenic makers of mouse bone mesenchymal stem cells (mBMSCs). However, the scaffolds with lower amount of Ga increased cell proliferation and upregulated expression of late osteogenic maker of mBMSCs. This study offers a novel approach to modify the bioceramic scaffolds for bone regeneration under the condition of accelerated bone resorption. (c) 2019 Wiley Periodicals, Inc. J Biomed Mater Res Part A: 107A: 1314-1323, 2019.
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<div class="JournalArticle Publication short-list"> <div class="authors"> <span class="author-name" > He, Fupo ✉ </span> <span class="author-type"> </span> ; <span class="author-name" > Lu, Teliang </span> <span class="author-type"> </span> ; <span class="author-name" > Fang, Xibo </span> <span class="author-type"> </span> ; <span class="author-name" > Tian, Ye </span> <span class="author-type"> </span> ; <span class="author-name" > Li, Yanhui </span> <span class="author-type"> </span> ; <span class="author-name" > Zuo, Fei </span> <span class="author-type"> </span> ; <span class="author-name" > Ye, Jiandong ✉ </span> <span class="author-type"> </span> </div ><div class="title"><a href="/gui2/?mode=browse¶ms=publication;31090076" mtid="31090076" target="_blank">Modification of honeycomb bioceramic scaffolds for bone regeneration under the condition of excessive bone resorption</a></div> <div class="pub-info"> <span class="journal-title">JOURNAL OF BIOMEDICAL MATERIALS RESEARCH PART A</span> <span class="journal-volume">107</span> : <span class="journal-issue">6</span> <span class="page"> pp. 1314-1323. , 10 p. </span> <span class="year">(2019)</span> </div> <div class="pub-end"><div class="identifier-list"> <span class="identifiers"> <span class="id identifier oa_none" title="none"> <a style="color:blue" title="10.1002/jbm.a.36644" target="_blank" href="https://doi.org/10.1002%2Fjbm.a.36644"> DOI </a> </span> <span class="id identifier oa_none" title="none"> <a style="color:blue" title="000467421500020" target="_blank" href="http://gateway.isiknowledge.com/gateway/Gateway.cgi?&GWVersion=2&SrcAuth=CustomerName&SrcApp=CustomerName&DestLinkType=FullRecord&KeyUT=000467421500020&DestApp=WOS"> WoS </a> </span> <span class="id identifier oa_none" title="none"> <a style="color:blue" title="85061918050" target="_blank" href="http://www.scopus.com/record/display.url?origin=inward&eid=2-s2.0-85061918050"> Scopus </a> </span> </span> </div> <div class="short-pub-prop-list"> <span class="short-pub-mtid"> Közlemény:31090076 </span> <span class="status-holder"><span class="status-data status-VALIDATED"> Egyeztetett </span></span> <span class="pub-core"> Idéző </span> <span class="pub-type">Folyóiratcikk (Szakcikk ) </span> <!-- && !record.category.scientific --> <span class="pub-category">Tudományos</span> </div> </div> </div><div class="JournalArticle Publication long-list">
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<div class="title"><a href="/gui2/?mode=browse¶ms=publication;31090076" target="_blank">Modification of honeycomb bioceramic scaffolds for bone regeneration under the condition of excessive bone resorption</a></div> <div> <span class="journal-title">JOURNAL OF BIOMEDICAL MATERIALS RESEARCH PART A</span>
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<pre class="comment" style="margin-top: 0; margin-bottom: 0;"><u>Megjegyzés</u>: School of Electromechanical Engineering, Guangdong University of Technology, Guangzhou, 510006, China
School of Materials Science and Engineering, South China University of Technology, Guangzhou, 510641, China
Export Date: 15 March 2020
CODEN: JBMRC
Correspondence Address: He, F.; School of Electrome...</pre>
</div></div>