A review on the enhancement of calcium phosphate cement with biological materials in bone defect healing

Calcium phosphate cement (CPC) is a promising material used in the treatment of bone defects due to its profitable features of self-setting capability, osteoconductivity, injectability, mouldability, and biocompatibility. However, the major limitations of CPC, such as the brittleness, lack of osteog...

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Main Authors: Wong, Sok Kuan, Wong, Yew Hoong, Chin, Kok-Yong, Ima-Nirwana, Soelaiman
Format: Article
Published: MDPI 2021
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Online Access:http://eprints.um.edu.my/26753/
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spelling my.um.eprints.267532022-04-15T07:27:05Z http://eprints.um.edu.my/26753/ A review on the enhancement of calcium phosphate cement with biological materials in bone defect healing Wong, Sok Kuan Wong, Yew Hoong Chin, Kok-Yong Ima-Nirwana, Soelaiman QD Chemistry Calcium phosphate cement (CPC) is a promising material used in the treatment of bone defects due to its profitable features of self-setting capability, osteoconductivity, injectability, mouldability, and biocompatibility. However, the major limitations of CPC, such as the brittleness, lack of osteogenic property, and poor washout resistance, remain to be resolved. Thus, significant research effort has been committed to modify and reinforce CPC. The mixture of CPC with various biological materials, defined as the materials produced by living organisms, have been fabricated by researchers and their characteristics have been investigated in vitro and in vivo. This present review aimed to provide a comprehensive overview enabling the readers to compare the physical, mechanical, and biological properties of CPC upon the incorporation of different biological materials. By mixing the bone-related transcription factors, proteins, and/or polysaccharides with CPC, researchers have demonstrated that these combinations not only resolved the lack of mechanical strength and osteogenic effects of CPC but also further improve its own functional properties. However, exceptions were seen in CPC incorporated with certain proteins (such as elastin-like polypeptide and calcitonin gene-related peptide) as well as blood components. In conclusion, the addition of biological materials potentially improves CPC features, which vary depending on the types of materials embedded into it. The significant enhancement of CPC seen in vitro and in vivo requires further verification in human trials for its clinical application. MDPI 2021-09 Article PeerReviewed Wong, Sok Kuan and Wong, Yew Hoong and Chin, Kok-Yong and Ima-Nirwana, Soelaiman (2021) A review on the enhancement of calcium phosphate cement with biological materials in bone defect healing. Polymers, 13 (18). ISSN 2073-4360, DOI https://doi.org/10.3390/polym13183075 <https://doi.org/10.3390/polym13183075>. 10.3390/polym13183075
institution Universiti Malaya
building UM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Malaya
content_source UM Research Repository
url_provider http://eprints.um.edu.my/
topic QD Chemistry
spellingShingle QD Chemistry
Wong, Sok Kuan
Wong, Yew Hoong
Chin, Kok-Yong
Ima-Nirwana, Soelaiman
A review on the enhancement of calcium phosphate cement with biological materials in bone defect healing
description Calcium phosphate cement (CPC) is a promising material used in the treatment of bone defects due to its profitable features of self-setting capability, osteoconductivity, injectability, mouldability, and biocompatibility. However, the major limitations of CPC, such as the brittleness, lack of osteogenic property, and poor washout resistance, remain to be resolved. Thus, significant research effort has been committed to modify and reinforce CPC. The mixture of CPC with various biological materials, defined as the materials produced by living organisms, have been fabricated by researchers and their characteristics have been investigated in vitro and in vivo. This present review aimed to provide a comprehensive overview enabling the readers to compare the physical, mechanical, and biological properties of CPC upon the incorporation of different biological materials. By mixing the bone-related transcription factors, proteins, and/or polysaccharides with CPC, researchers have demonstrated that these combinations not only resolved the lack of mechanical strength and osteogenic effects of CPC but also further improve its own functional properties. However, exceptions were seen in CPC incorporated with certain proteins (such as elastin-like polypeptide and calcitonin gene-related peptide) as well as blood components. In conclusion, the addition of biological materials potentially improves CPC features, which vary depending on the types of materials embedded into it. The significant enhancement of CPC seen in vitro and in vivo requires further verification in human trials for its clinical application.
format Article
author Wong, Sok Kuan
Wong, Yew Hoong
Chin, Kok-Yong
Ima-Nirwana, Soelaiman
author_facet Wong, Sok Kuan
Wong, Yew Hoong
Chin, Kok-Yong
Ima-Nirwana, Soelaiman
author_sort Wong, Sok Kuan
title A review on the enhancement of calcium phosphate cement with biological materials in bone defect healing
title_short A review on the enhancement of calcium phosphate cement with biological materials in bone defect healing
title_full A review on the enhancement of calcium phosphate cement with biological materials in bone defect healing
title_fullStr A review on the enhancement of calcium phosphate cement with biological materials in bone defect healing
title_full_unstemmed A review on the enhancement of calcium phosphate cement with biological materials in bone defect healing
title_sort review on the enhancement of calcium phosphate cement with biological materials in bone defect healing
publisher MDPI
publishDate 2021
url http://eprints.um.edu.my/26753/
_version_ 1735409453501513728
score 13.211869